7004 lines
270 KiB
BibTeX
7004 lines
270 KiB
BibTeX
% Encoding: UTF-8
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@article{Abel2009,
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title={{Sensitive response to low-frequency cochlear distortion products in the auditory midbrain}},
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author={Abel, Cornelius and K\"ossl, Manfred},
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journal={Journal of Neurophysiology},
|
||
volume={101},
|
||
number={3},
|
||
pages={1560--1574},
|
||
year={2009},
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||
publisher={American Physiological Society}
|
||
}
|
||
|
||
@article{Adelson1985,
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||
title={{Spatiotemporal energy models for the perception of motion}},
|
||
author={Adelson, Edward H and Bergen, James R},
|
||
journal={Journal of the Optical Society of America},
|
||
volume={2},
|
||
number={2},
|
||
pages={284--299},
|
||
year={1985},
|
||
publisher={Optical Society of America}
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||
}
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||
|
||
@article{Aertsen1981,
|
||
title={{The spectro-temporal receptive field: a functional characteristic of auditory neurons}},
|
||
author={Aertsen, Ad M H J and Johannesma, P I M},
|
||
journal={Biological Cybernetics},
|
||
volume={42},
|
||
number={2},
|
||
pages={133--143},
|
||
year={1981},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@article{Barnett1971,
|
||
title={Bispectrum analysis of electroencephalogram signals during waking and sleeping},
|
||
author={Barnett, TP and Johnson, LC and Naitoh, P and Hicks, N and Nute, C},
|
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journal={Science},
|
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volume={172},
|
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number={3981},
|
||
pages={401--402},
|
||
year={1971},
|
||
publisher={American Association for the Advancement of Science}
|
||
}
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||
|
||
@article{Bullock1997,
|
||
title={Bicoherence of intracranial {EEG} in sleep, wakefulness and seizures},
|
||
author={Bullock, TH and Achimowicz, JZ and Duckrow, RB and Spencer, SS and Iragui-Madoz, VJ},
|
||
journal={Electroencephalography and clinical Neurophysiology},
|
||
volume={103},
|
||
number={6},
|
||
pages={661--678},
|
||
year={1997},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@ARTICLE{Aguilera2003,
|
||
AUTHOR = {Pedro A. Aguilera and Angel A. Caputi},
|
||
TITLE = {{Electroreception in \textit{G. carapo}: detection of changes in waveform of the electrosensory signals.}},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2003},
|
||
VOLUME = {206},
|
||
PAGES = {989--998}
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||
}
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||
|
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|
||
@Article{Akre2010,
|
||
Title = {{Complexity Increases Working Memory for Mating Signals.}},
|
||
Author = {Karin L. Akre and Michael J. Ryan},
|
||
Journal = CurrBiol,
|
||
Year = {2010},
|
||
Pages = {502-505},
|
||
Volume = {20}
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||
}
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|
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|
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@Article{Albert2001,
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author = {Albert, James},
|
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year = {2001},
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month = {01},
|
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pages = {},
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||
title = {{Species diversity and phylogenetic systematics of American knifefishes (Gymnotiformes, Teleostei)}},
|
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volume = {190},
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||
pages = {1-127},
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journal = {Miscellaneous Publications Museum of Zoology University of Michigan},
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}
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@ARTICLE{Alda2013,
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AUTHOR = { Fernando Alda and Sophie Picq and Luis Fernando De Le\'on and Rigoberto Gonz\'alez and Henriette Walz and Eldredge Bermingham and R\"udiger Krahe},
|
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TITLE = {{First record of \textit{Gymnotus henni} ({Albert}, {Crampton} and {Maldonado}, 2003) in Panama: Phylogenetic position and electric signal characterization.}},
|
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JOURNAL = {Check List},
|
||
YEAR = {2013},
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VOLUME = {9},
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PAGES = {655--659}
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}
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|
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|
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@techreport{Amidror2015Consonance,
|
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title={{Analytic derivation of the (k/j)-order modulation envelopes in the sum of two mistuned (co) sine waves}},
|
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author={Amidror, Isaac},
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year={2015}
|
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}
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|
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@ARTICLE{Ammari2014,
|
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AUTHOR = {Habib Ammari and Thomas Boulier and Josselin Garnier and Han Wang},
|
||
TITLE = {{Shape recognition and classification in electro-sensing.}},
|
||
JOURNAL = {Proceedings of the National Academy of Sciences},
|
||
YEAR = {2014},
|
||
VOLUME = {111},
|
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PAGES = {11652--11657}
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}
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|
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@ARTICLE{Ammari2017,
|
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AUTHOR = {Habib Ammari and Thomas Boulier and Josselin Garnier and Han Wang},
|
||
TITLE = {{Mathematical modelling of the electric sense of fish: the role of multi-frequency measurements and movement.}},
|
||
JOURNAL = {Bioinspir Biomim},
|
||
YEAR = {2017},
|
||
VOLUME = {12},
|
||
PAGES = {025002}
|
||
}
|
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|
||
@Article{Amoore1986,
|
||
title={{Effects of chemical exposure on olfaction in humans}},
|
||
author={Amoore, JE},
|
||
journal={Toxicology of the Nasal Passages},
|
||
pages={155--190},
|
||
year={1986},
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||
publisher={Hemisphere Publishing Corporation, Washington, DC}
|
||
}
|
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|
||
@Article{Anderson2014,
|
||
Title = {{Toward a Science of Computational Ethology}},
|
||
Author = {Anderson, DJ and Perona, P},
|
||
Journal = Neuron,
|
||
Year = {2014},
|
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Number = {1},
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Pages = {18--31},
|
||
Volume = {84}
|
||
}
|
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|
||
@article{Arendt2008,
|
||
title={{Convergence and parallelism reconsidered: what have we learned about the genetics of adaptation?}},
|
||
author={Arendt, Jeff and Reznick, David},
|
||
journal={Trends in Ecology \& Evolution},
|
||
volume={23},
|
||
number={1},
|
||
pages={26--32},
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||
year={2008},
|
||
publisher={Elsevier}
|
||
}
|
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|
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@ARTICLE{Arnegard2005,
|
||
AUTHOR = {Matthew E. Arnegard and Bruce A. Carlson},
|
||
TITLE = {{Electric organ discharge patterns during group hunting by a mormyrid fish.}},
|
||
JOURNAL = ProcRSocLondBBiolSci,
|
||
YEAR = {2005},
|
||
VOLUME = {272},
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||
PAGES = {1305--1314}
|
||
}
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|
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@ARTICLE{Arnegard2006,
|
||
AUTHOR = {Matthew E. Arnegard and B. Scott Jackson and Carl D. Hopkins},
|
||
TITLE = {{Time-domain signal divergence and discrimination without receptor modification in sympatric morphs of electric fishes.}},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2006},
|
||
VOLUME = {209},
|
||
PAGES = {2182--2198}
|
||
}
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|
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@ARTICLE{Arnegard2010,
|
||
AUTHOR = {Matthew E. Arnegard and Peter B. McIntyre and Luke J. Harmon and Miriam L. Zelditch and William G. R. Crampton and Justin K. Davis and John P. Sullivan and S\'ébastien Lavou\'é and
|
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Carl D. Hopkins},
|
||
TITLE = {{Sexual signal evolution outpaces ecological divergence during electric fish species radiation.}},
|
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JOURNAL = {American Naturalist},
|
||
YEAR = {2010},
|
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VOLUME = {176},
|
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PAGES = {335--356}
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}
|
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|
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@Article{Arnold1994,
|
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Title = {{Is there a Unifying Concept of Sexual Selection that Applies to Both Plants and Animals?}},
|
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Author = {Stevan J. Arnold},
|
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Journal = {The American Naturalist},
|
||
Year = {1994},
|
||
Pages = {S1-S12},
|
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Volume = {144},
|
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|
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Doi = {10.2307/2462726},
|
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Owner = {raab},
|
||
Timestamp = {2020.01.30}
|
||
}
|
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|
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@article{Arthur1971,
|
||
title={{Properties of ``two-tone inhibition" in primary auditory neurones}},
|
||
author={Arthur, RM and Pfeiffer, RR and Suga, N},
|
||
journal={The Journal of Physiology},
|
||
volume={212},
|
||
number={3},
|
||
pages={593--609},
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year={1971},
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publisher={Wiley Online Library}
|
||
}
|
||
|
||
@Article{Ashida2011,
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Title = {{Sound localization: Jeffress and beyond.}},
|
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Author = {Go Ashida and Katherine E Carr},
|
||
Journal = CurrOpinNeurobiol,
|
||
Year = {2011},
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Pages = {745-751},
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||
Volume = {21}
|
||
}
|
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|
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@ARTICLE{Assad1999,
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AUTHOR = {Christopher Assad and Brian Rasnow and Philip K. Stoddard},
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TITLE = {{Electric organ discharges and electric images during electrolocation.}},
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JOURNAL = {Journal of Experimental Biology},
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YEAR = {1999},
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VOLUME = {202},
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PAGES = {1185--1193}
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}
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@InProceedings{Attias1997,
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Title = {{Temporal Low-Order Statistics of Natural Sounds}},
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Author = {H. Attias and C. E. Schreiner},
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Booktitle = {Advances in Neural Information Processing Systems},
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Year = {1997},
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Editor = {Michael C. Mozer and Michael {I}. Jordan and Thomas Petsche},
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Pages = {27},
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Publisher = {The {MIT} Press},
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Volume = {9}
|
||
}
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@Article{Attick1991,
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Title = {{Could information theory provide an ecological theory of sensory processing?}},
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Author = {Joseph J. Attick},
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Journal = Network,
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Year = {1991},
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Pages = {213-251},
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Volume = {3}
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}
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@article{Audouze2014,
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title={{Identification of odorant-receptor interactions by global mapping of the human odorome}},
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author={Audouze, Karine and Tromelin, Anne and Le Bon, Anne Marie and Belloir, Christine and Petersen, Rasmus Koefoed and Kristiansen, Karsten and Brunak, S{\o}ren and Taboureau, Olivier},
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journal={PLoS One},
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volume={9},
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number={4},
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pages={e93037},
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year={2014},
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publisher={Public Library of Science San Francisco, USA}
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}
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@Article{Averbeck2006,
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title={{Neural correlations, population coding and computation}},
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author={Averbeck, Bruno B and Latham, Peter E and Pouget, Alexandre},
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journal={Nature Reviews Neuroscience},
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volume={7},
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number={5},
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pages={358--366},
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year={2006},
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publisher={Nature Publishing Group UK London}
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||
}
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@article{Avoli1989,
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title={{Electrophysiological properties and synaptic responses in the deep layers of the human epileptogenic neocortex in vitro}},
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author={Avoli, M and Olivier, A},
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journal={Journal of Neurophysiology},
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volume={61},
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number={3},
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pages={589--606},
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year={1989}
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}
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|
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@ARTICLE{Babineau2006,
|
||
AUTHOR = {David Babineau and Andr\'e Longtin and John E. Lewis},
|
||
TITLE = {{Modeling the electric field of weakly electric fish.}},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2006},
|
||
VOLUME = {209},
|
||
PAGES = {3636--3651}
|
||
}
|
||
|
||
@ARTICLE{Babineau2007,
|
||
AUTHOR = {David Babineau and Andr\'e Longtin and John E. Lewis},
|
||
TITLE = {{Spatial acuity and prey detection in weakly electric fish.}},
|
||
JOURNAL = {PLoS Computational Biology},
|
||
YEAR = {2007},
|
||
VOLUME = {3},
|
||
PAGES = {e38}
|
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}
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|
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@article{Bach2008,
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title={{Rising sound intensity: an intrinsic warning cue activating the amygdala}},
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author={Bach, Dominik R and Sch{\"a}chinger, Hartmut and Neuhoff, John G and Esposito, Fabrizio and Salle, Francesco Di and Lehmann, Christoph and Herdener, Marcus and Scheffler, Klaus and Seifritz, Erich},
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journal={Cerebral Cortex},
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volume={18},
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number={1},
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pages={145--150},
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year={2008},
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publisher={Oxford University Press}
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}
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||
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@ARTICLE{Bacher1983,
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AUTHOR = {M. Bacher},
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TITLE = {{A new method for the simulation of electric fields, generated by electric fish, and their distorsions by objects}},
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JOURNAL = BiolCybern,
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YEAR = {1983},
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VOLUME = {47},
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PAGES = {51--58}
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}
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@Article{Baktoft2015,
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Title = {{Performance Assessment of Two Whole-Lake Acoustic Positional Telemetry Systems - Is Reality Mining of Free-Ranging Aquatic Animals Technologically Possible?}},
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Author = {Baktoft, Henrik and Zajicek, Petr and Klefoth, Thomas and Svendsen, Jon C. and Jacobsen, Lene and Pedersen, Martin W{\ae}ver and March Morla, David and Skov, Christian and Nakayama, Shinnosuke and Arlinghaus, Robert},
|
||
Journal = PLOSOne,
|
||
Year = {2015},
|
||
Number = {5},
|
||
Pages = {1-20},
|
||
Volume = {10},
|
||
Doi = {10.1371/journal.pone.0126534},
|
||
Publisher = {Public Library of Science},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@article{Ball1971,
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||
title={{Infant responses to impending collision: optical and real}},
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author={Ball, William and Tronick, Edward},
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journal={Science},
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volume={171},
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number={3973},
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pages={818--820},
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year={1971},
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publisher={American Association for the Advancement of Science}
|
||
}
|
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|
||
@Article{Baluch2011,
|
||
Title = {{Mechanisms of top-down attention.}},
|
||
Author = {Farhan Baluch and Laurent Itti},
|
||
Journal = TINS,
|
||
Year = {2011},
|
||
Number = {4},
|
||
Pages = {210-224},
|
||
Volume = {34}
|
||
}
|
||
|
||
@article{Barayeu2023,
|
||
title = {Beat encoding at mistuned octaves within single electrosensory neurons},
|
||
journal = {iScience},
|
||
volume = {26},
|
||
number = {7},
|
||
pages = {106840},
|
||
year = {2023},
|
||
issn = {2589-0042},
|
||
doi = {https://doi.org/10.1016/j.isci.2023.106840},
|
||
url = {https://www.sciencedirect.com/science/article/pii/S2589004223009173},
|
||
author = {Alexandra Barayeu and Ramona Schäfer and Jan Grewe and Jan Benda},
|
||
keywords = {Behavioral neuroscience, Animal science, Modeling signal processing system},
|
||
abstract = {Summary
|
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Beats are slow periodic amplitude modulations resulting from the superposition of two spectrally close periodic signals. The difference frequency between the signals sets the frequency of the beat. A field study in the electric fish Apteronotus rostratus showed the behavioral relevance of very high difference frequencies. Contrary to expectations from previous studies, our electrophysiological data show strong responses of p-type electroreceptor afferents whenever the difference frequency approaches integer multiples (mistuned octaves) of the fish’s own electric field frequency (carrier). Mathematical reasoning and simulations show that common approaches to extract amplitude modulations, such as Hilbert transform or half-wave rectification, are not sufficient to explain the responses at carrier octaves. Instead, half-wave rectification needs to be smoothed out, for example by a cubic function. Because electroreceptive afferents share many properties with auditory nerve fibers, these mechanisms may underly the human perception of beats at mistuned octaves as described by Ohm and Helmholtz.}
|
||
}
|
||
|
||
@article{Barayeu2024,
|
||
title={Bursts boost nonlinear encoding in electroreceptor afferents},
|
||
author={Barayeu, Alexandra and Schlungbaum, Maria and Lindner, Benjamin and Grewe, Jan and Benda, Jan},
|
||
journal={bioRxiv},
|
||
pages={2024--06},
|
||
year={2024},
|
||
publisher={Cold Spring Harbor Laboratory}
|
||
}
|
||
|
||
@Article{Barber2000,
|
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Title = {{The importance of stable schooling: do familiar sticklebacks stick together?}},
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Author = {Barber, Iain and Ruxton, Graeme D},
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Journal = ProcRSocLondBBiolSci,
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Year = {2000},
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Number = {1439},
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Pages = {151-155},
|
||
Volume = {267},
|
||
|
||
Doi = {10.1098/rspb.2000.0980},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.27}
|
||
}
|
||
|
||
@article{Barlow1957,
|
||
title={{Change of organization in the receptive fields of the cat's retina during dark adaptation}},
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author={Barlow, HB and Fitzhugh, Roo and Kuffler, SW},
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journal={The Journal of Physiology},
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volume={137},
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number={3},
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pages={338},
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year={1957},
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publisher={Wiley-Blackwell}
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}
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@InCollection{Barlow1961,
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||
Title = {{Possible principles underlying the transformation of sensory messages.}},
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Author = {H. B. Barlow},
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Booktitle = {Sensory Communication},
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Publisher = {MIT Press},
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Year = {1961},
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Address = {Cambridge},
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Editor = {W. Rosenblith},
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Pages = {217--234}
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}
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|
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@article{Barlow1972,
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title={{Single units and sensation: a neuron doctrine for perceptual psychology?}},
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author={Barlow, Horace B},
|
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journal={Perception},
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volume={1},
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number={4},
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pages={371--394},
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year={1972},
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publisher={SAGE Publications Sage UK: London, England}
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}
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Title = {Redundancy reduction revisited.},
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Author = {Horace Barlow},
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Journal = Network,
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Year = {2001},
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Pages = {241--253},
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Volume = {12}
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}
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@Article{Bastian1980,
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Title = {{Neural Correlates of the Jamming Avoidance Response of \textit{{E}genmannia}.}},
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Author = {Joseph Bastian and Walter Heiligenberg},
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Journal = JCompPhysiolA,
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Year = {1980},
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Pages = {135--152},
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Volume = {136}
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}
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|
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@article{Bastian1981,
|
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title={Electrolocation},
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author={Bastian, Joseph},
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journal={Journal of Comparative Physiology},
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volume={144},
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number={4},
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pages={465--479},
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year={1981},
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publisher={Springer}
|
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}
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|
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@Article{Bastian1981a,
|
||
Title = {Electrolocation {I}. {H}ow Electroreceptors of \textit{{A}pteronotus albifrons} Code for Moving Objects and Other Electrical Stimuli.},
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Author = {Joseph Bastian},
|
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Journal = {Journal of Comparative Physiology},
|
||
Year = {1981},
|
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Pages = {465--479},
|
||
Volume = {144},
|
||
}
|
||
|
||
@Article{Bastian1981b,
|
||
Title = {Electrolocation {II}. {The} Effects of Moving Objects and Other Electrical Stimuli on the Activities of Two Categories of Posterior Lateral Line Lobe Cells in \textit{Apteronotus albifrons}.},
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Author = {Joseph Bastian},
|
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Journal = {Journal of Comparative Physiology},
|
||
Year = {1981},
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Pages = {481--494},
|
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Volume = {144}
|
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}
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@Article{Bastian1985,
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Title = {Gain Control in the Electrosensory System Mediated by Descending Inputs to the Electrosensory Lateral Line Lobe.},
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Author = {Joseph Bastian},
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Journal = JNeurosci,
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Year = {1986},
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Pages = {553--562},
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Volume = {6}
|
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}
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@article{Bastian1987,
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author = {Joseph Bastian},
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title = {Electrolocation in the presence of jamming signals: behavior},
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journal = JCompPhysiolA,
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year = {1987},
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volume = {161},
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@Article{Bastian1990,
|
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Title = {{Descending Control of Electroreception. I. Properties of Nucleus Praeeminentialis Neurons Projecting Indirectly to the Electrosensory Lateral Line Lobe.}},
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Pages = {1226-1240},
|
||
Volume = {10}
|
||
}
|
||
|
||
@Article{Bastian1991,
|
||
title={Morphological correlates of pyramidal cell adaptation rate in the electrosensory lateral line lobe of weakly electric fish},
|
||
author={Bastian, Joseph and Courtright, Jay},
|
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journal={Journal of Comparative Physiology A},
|
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volume={168},
|
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pages={393--407},
|
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year={1991},
|
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publisher={Springer}
|
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}
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|
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Title = {The role of amino acid neurotransmitters in the descending control of electroreception.},
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Author = {J. Bastian},
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Year = {1993},
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Pages = {409-423},
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Volume = {172}
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}
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|
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|
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|
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Title = {Commisural neurons of the electrosensory lateral line lob of \textit{Apteronotus leptorhynchus}: morphological and physiological characteristics.},
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Author = {J. Bastian and J. Courtright and J. Crawford},
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Journal = JCompPhysiolA,
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Year = {1993},
|
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Pages = {257-274},
|
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Volume = {173}
|
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}
|
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|
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|
||
Title = {Pyramidal-cell plasticity in weakly electric fish: a mechanism for attenuating responses to reafferent electrosensory inputs.},
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Author = {J. Bastian},
|
||
Journal = JCompPhysiolA,
|
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Year = {1995},
|
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Pages = {63-78},
|
||
Volume = {176}
|
||
}
|
||
|
||
|
||
|
||
@Article{Bastian1996a,
|
||
Title = {{Plasticity in an Electrosensory System. I. General Features of a Dynamic Sensory Filter.}},
|
||
Author = {Joseph Bastian},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {1996},
|
||
Number = {4},
|
||
Pages = {2483-2496},
|
||
Volume = {76}
|
||
}
|
||
|
||
@Article{Bastian1996b,
|
||
Title = {{Plasticity in an Electrosensory System. II. Postsynaptic Events Associated With a Dynamic Sensory Filter.}},
|
||
Author = {Joseph Bastian},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {1996},
|
||
Number = {4},
|
||
Pages = {2497-2507},
|
||
Volume = {76}
|
||
}
|
||
|
||
@Article{Bastian1998,
|
||
Title = {{Modulation of Calcium-Dependent Postsynaptic Depression Contributes to an Adaptive Sensory Filter.}},
|
||
Author = {Joseph Bastian},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {1998},
|
||
Pages = {3352-3355},
|
||
Volume = {80}
|
||
}
|
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|
||
@Article{Bastian2001,
|
||
Title = {Dentritic Modulation of Burst-Like Firing in Sensory Neurons.},
|
||
Author = {Joseph Bastian and Jerry Nguyenkim},
|
||
Journal = {Journal of Neurophysiology},
|
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Year = {2001},
|
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Number = {1},
|
||
Pages = {10-22},
|
||
Volume = {85}
|
||
}
|
||
@article{Bastian2002,
|
||
title={Receptive field organization determines pyramidal cell stimulus-encoding capability and spatial stimulus selectivity},
|
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author={Bastian, Joseph and Chacron, Maurice J and Maler, Leonard},
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journal={Journal of Neuroscience},
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volume={22},
|
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number={11},
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pages={4577--4590},
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year={2002},
|
||
publisher={Soc Neuroscience}
|
||
}
|
||
|
||
@Article{Bastian2004,
|
||
title={Plastic and nonplastic pyramidal cells perform unique roles in a network capable of adaptive redundancy reduction},
|
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author={Bastian, Joseph and Chacron, Maurice J and Maler, Leonard},
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journal={Neuron},
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volume={41},
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number={5},
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pages={767--779},
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year={2004},
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publisher={Elsevier}
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}
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|
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@article{Batra1989,
|
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title={Temporal coding of envelopes and their interaural delays in the inferior colliculus of the unanesthetized rabbit},
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author={Batra, R and Kuwada, S and Stanford, TR},
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pages={257--268},
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year={1989}
|
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}
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|
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@Article{Behrend1977,
|
||
Title = {Processing information carried in a high frequency wave: properties of cerebellar units in a high frequency electric fish.},
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Author = {Konstantin Behrend},
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Journal = JCompPhysiol,
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Year = {1977},
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Pages = {357-371},
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Volume = {118}
|
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}
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|
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@article{Beiran2018,
|
||
title={Coding of time-dependent stimuli in homogeneous and heterogeneous neural populations},
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author={Beiran, Manuel and Kruscha, Alexandra and Benda, Jan and Lindner, Benjamin},
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journal={Journal of Computational Neuroscience},
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volume={44},
|
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pages={189--202},
|
||
year={2018},
|
||
publisher={Springer}
|
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}
|
||
|
||
@article{Beiran2018coding,
|
||
title={Coding of time-dependent stimuli in homogeneous and heterogeneous neural populations},
|
||
author={Beiran, Manuel and Kruscha, Alexandra and Benda, Jan and Lindner, Benjamin},
|
||
journal={Journal of Computational Neuroscience},
|
||
volume={44},
|
||
pages={189--202},
|
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year={2018},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@ARTICLE{Belbenoit1970,
|
||
AUTHOR = {Pierre Belbenoit},
|
||
TITLE = {Conditionnement instrumental de l'\'electroperception des objets chez \textit{Gnathonemus petersii} ({Mormyridae}, {Teleostei}, {Pisces}).},
|
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JOURNAL = {Z vergl Physiol},
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YEAR = {1970},
|
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VOLUME = {67},
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PAGES = {192--204}
|
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}
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|
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@ARTICLE{Bell1976,
|
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AUTHOR = {C. C. Bell and J. Bradbury and C. J. Russell},
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||
TITLE = {The electric organ of a mormyrid as a current and voltage source.},
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JOURNAL = JCompPhysiol,
|
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YEAR = {1976},
|
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VOLUME = {110},
|
||
PAGES = {65--88}
|
||
}
|
||
|
||
|
||
@ARTICLE{Benda2005,
|
||
AUTHOR = {Jan Benda and Andr\'e Longtin and Leonard Maler},
|
||
TITLE = {Spike-frequency adaptation separates transient communication signals from background oscillations.},
|
||
YEAR = {2005},
|
||
JOURNAL = {Journal of Neuroscience},
|
||
VOLUME = {25},
|
||
NUMBER = {9},
|
||
PAGES = {2312--2321} }
|
||
|
||
|
||
@ARTICLE{Benda2006,
|
||
AUTHOR = {Jan Benda and Andr\'e Longtin and Leonard Maler},
|
||
TITLE = {A synchronization-desynchronization code for natural communication signals.},
|
||
YEAR = {2006},
|
||
JOURNAL = Neuron,
|
||
VOLUME = {52},
|
||
PAGES = {347--358} }
|
||
|
||
@ARTICLE{Benda2010,
|
||
AUTHOR = {Jan Benda and Leonard Maler and Andr\'e Longtin},
|
||
TITLE = {Linear versus Nonlinear Signal Transmission in Neuron Models
|
||
with Adaptation-Currents or Dynamic Thresholds.},
|
||
YEAR = {2010},
|
||
JOURNAL = {Journal of Neurophysiology},
|
||
VOLUME = {104},
|
||
PAGES = {2806-2820} }
|
||
|
||
@incollection{Benda2013,
|
||
author = {Benda, Jan and Grewe, Jan and Krahe, R{\~A}{\^A}{\~A}{\^A}{\~A}{\^A}{\~A}{\^A}¼diger},
|
||
booktitle = {Animal Communication and Noise},
|
||
doi = {10.1007/978-3-642-41494-7_12},
|
||
editor = {Brumm, Henrik},
|
||
isbn = {978-3-642-41493-0},
|
||
language = {English},
|
||
pages = {331-372},
|
||
publisher = {Springer Berlin Heidelberg},
|
||
refid = {876},
|
||
series = {Animal Signals and Communication},
|
||
timestamp = {2014.02.03},
|
||
title = {Neural Noise in Electrocommunication: From Burden to Benefits},
|
||
url = {http://dx.doi.org/10.1007/978-3-642-41494-7_12},
|
||
volume = {2},
|
||
year = {2013},
|
||
bdsk-url-1 = {http://dx.doi.org/10.1007/978-3-642-41494-7_12}}
|
||
|
||
@incollection{Benda2020,
|
||
title={The physics of electrosensory worlds.},
|
||
author={Benda, Jan},
|
||
editor={Fritsch, B. and Bleckmann, H},
|
||
volume={7},
|
||
pages={228--254},
|
||
year={2020},
|
||
publisher={Elsevier, Academic Press},
|
||
booktitle={The senses: a comprehensive reference}
|
||
}
|
||
|
||
@article{Benda2021,
|
||
title={Neural adaptation},
|
||
author={Benda, Jan},
|
||
journal={Current Biology},
|
||
volume={31},
|
||
number={3},
|
||
pages={R110--R116},
|
||
year={2021},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@ARTICLE{Bennett1970,
|
||
AUTHOR = {Michael V. L. Bennett},
|
||
TITLE = {Comparative physiology: electric organs.},
|
||
JOURNAL = AnnuRevPhysiol,
|
||
YEAR = {1970},
|
||
VOLUME = {32},
|
||
PAGES = {471--528}
|
||
}
|
||
|
||
@ARTICLE{Bennett1971,
|
||
AUTHOR = {Michael V. L. Bennett},
|
||
TITLE = {Electroreception.},
|
||
JOURNAL = {Fish Physiology},
|
||
YEAR = {1971},
|
||
VOLUME = {5},
|
||
PAGES = {493--574}
|
||
}
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||
|
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@Article{Berdahl2018,
|
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author = {Berdahl, Andrew M. and Kao, Albert B. and Flack, Andrea and Westley, Peter A. H. and Codling, Edward A. and Couzin, Iain D. and Dell, Anthony I. and Biro, Dora},
|
||
title = {Collective animal navigation and migratory culture: from theoretical models to empirical evidence},
|
||
journal = PhilTransRSocLondBBiolSci,
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||
year = {2018},
|
||
volume = {373},
|
||
pages = {20170009},
|
||
doi = {10.1098/rstb.2017.0009}
|
||
}
|
||
|
||
@Article{Berman1995,
|
||
title={Inositol 1, 4, 5-trisphosphate receptor localization in the brain of a weakly electric fish (\textit{Apteronotus leptorhynchus}) with emphasis on the electrosensory system},
|
||
author={Berman, Neil J and Hincke, Maxwell T and Maler, Leonard},
|
||
journal={Journal of comparative neurology},
|
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volume={361},
|
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number={3},
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pages={512--524},
|
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year={1995},
|
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publisher={Wiley Online Library}
|
||
}
|
||
|
||
@article{Berman1998inhibition,
|
||
title={Inhibition evoked from primary afferents in the electrosensory lateral line lobe of the weakly electric fish \textit{(Apteronotus leptorhynchus)}.},
|
||
author={Berman, Neil J and Maler, Leonard},
|
||
journal={Journal of Neurophysiology},
|
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volume={80},
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number={6},
|
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pages={3173--3196},
|
||
year={1998}
|
||
}
|
||
|
||
@article{Berman1999,
|
||
title={Neural architecture of the electrosensory lateral line lobe: adaptations for coincidence detection, a sensory searchlight and frequency-dependent adaptive filtering},
|
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author={Berman, Neil J and Maler, Leonard},
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journal={Journal of Experimental Biology},
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volume={202},
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number={10},
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pages={1243--1253},
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year={1999},
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publisher={The Company of Biologists Ltd}
|
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}
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@Article{Betsch2004,
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Title = {The world from a cat{'}s perspective --- statistics of natural videos.},
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Author = {Belinda Y. Betsch and Wolfgang Einh\"auser and Konrad P. K\"ording and Peter K\"onig},
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Journal = BiolCybern,
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Year = {2004},
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Pages = {41-50},
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Volume = {90}
|
||
}
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@Article{Bilde2007,
|
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Title = {Survival benefits select for group living in a social spider despite reproductive costs},
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Author = {Bilde, T. and Coates, K. S. and Birkhofer, K. and Bird, T. and Maklakov, A. A. and Lubin, Y. and Avil\'es, L.},
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Journal = JEvolBiol,
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Year = {2007},
|
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Number = {6},
|
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Pages = {2412-2426},
|
||
Volume = {20},
|
||
|
||
Abstract = {Abstract The evolution of cooperation requires benefits of group living to exceed costs. Hence, some components of fitness are expected to increase with increasing group size, whereas others may decrease because of competition among group members. The social spiders provide an excellent system to investigate the costs and benefits of group living: they occur in groups of various sizes and individuals are relatively short-lived, therefore life history traits and Lifetime Reproductive Success (LRS) can be estimated as a function of group size. Sociality in spiders has originated repeatedly in phylogenetically distant families and appears to be accompanied by a transition to a system of continuous intra-colony mating and extreme inbreeding. The benefits of group living in such systems should therefore be substantial. We investigated the effect of group size on fitness components of reproduction and survival in the social spider Stegodyphus dumicola in two populations in Namibia. In both populations, the major benefit of group living was improved survival of colonies and late-instar juveniles with increasing colony size. By contrast, female fecundity, female body size and early juvenile survival decreased with increasing group size. Mean individual fitness, estimated as LRS and calculated from five components of reproduction and survival, was maximized for intermediate- to large-sized colonies. Group living in these spiders thus entails a net reproductive cost, presumably because of an increase in intra-colony competition with group size. This cost is traded off against survival benefits at the colony level, which appear to be the major factor favouring group living. In the field, many colonies occur at smaller size than expected from the fitness curve, suggesting ecological or life history constraints on colony persistence which results in a transient population of relatively small colonies.},
|
||
Doi = {10.1111/j.1420-9101.2007.01407.x},
|
||
Keywords = {cooperation, fitness components, lifetime reproductive success, multilevel selection, social spiders, Stegodyphus dumicola},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21}
|
||
}
|
||
|
||
@article{Birmingham1999,
|
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title={Encoding of muscle movement on two time scales by a sensory neuron that switches between spiking and bursting modes},
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author={Birmingham, JT and Szuts, ZB and Abbott, LF and Marder, Eve},
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journal={Journal of Neurophysiology},
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volume={82},
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number={5},
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pages={2786--2797},
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year={1999},
|
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publisher={American Physiological Society Bethesda, MD}
|
||
}
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||
|
||
@ARTICLE{Black1970,
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AUTHOR = {Patricia Black-Cleworth},
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TITLE = {The Role of electrical discharges in the non-reproductive social behaviour of \textit{Gymnotus carapo} ({Gymnotidae}, {Pisces}).},
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PAGES = {1--78}
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}
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@Article{Bleckmann1993,
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Title = {The responses of peripheral and central mechanosensory lateral line units of weakly electric fish to moving objects.},
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Journal = JCompPhysiolA,
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Year = {1993},
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Pages = {115-128},
|
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Volume = {172}
|
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}
|
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|
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@ARTICLE{Bleckmann2009,
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AUTHOR = {Horst Bleckmann and Randy Zelick},
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TITLE = {Lateral line system of fish.},
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YEAR = {2009},
|
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JOURNAL = {Integrative Zoology},
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VOLUME = {4},
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PAGES = {13--25} }
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@Article{Blumstein2001,
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Title = {Yellow-Footed Rock-Wallaby Group Size Effects Reflect A Trade-Off},
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Author = {Blumstein, Daniel T. and Daniel, Janice C. and Evans, Christopher S.},
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Journal = {Ethology},
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Year = {2001},
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Number = {7},
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Pages = {655-664},
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Volume = {107},
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Owner = {raab},
|
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Timestamp = {2020.01.21}
|
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}
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@Article{Boerlin2013,
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Title = {Predictive Coding of Dynamical Variables in Balanced Spiking Networks.},
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Journal = {PLoS Computational Biology},
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Year = {2013},
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Number = {11},
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Pages = {e1003258},
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Volume = {9}
|
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}
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|
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@Article{Bol2011,
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Title = {Frequency-Tuned Cerebellar Channels and Burst Induced {LTD} Lead to the Cancellation of Redundant Sensory Inputs.},
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Author = {Kieran Bol and Gary Marsat and Eric Harvey-Girard and Andr\'e Longtin and Leonard Maler},
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Journal = JNeurosci,
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Year = {2011},
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Number = {30},
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}
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@Article{Bol2013,
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Title = {Modeling cancellation of periodic inputs with burst-{STDP} and feedback.},
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Journal = NeuralNetw,
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Pages = {120-133},
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Volume = {47}
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journal = {Nature Neurosci.},
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keywords = {Information, Information Theory, neural code, review, theory},
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refid = {216},
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timestamp = {2008.09.26},
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title = {Information theory and neural coding},
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volume = {2},
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year = {1999}}
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Author = {Bradbury, JW and Vehrencamp, SL},
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Publisher = {Sinauer},
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Year = {2011},
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Address = {Sunderland},
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Edition = {2nd}
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}
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@Article{Bratton1990,
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Title = {Descending Control of Electroreception. {II.} Properties of Nucleus Praeeminentialis Neurons Projecting Directly to the Electrosensory Lateral Line Lobe.},
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Author = {Bradford Bratton and Joseph Bastian},
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}
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@incollection{Briand2016,
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title={Taste perception and integration},
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author={Briand, Lo{\"\i}c and Salles, Christian},
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booktitle={Flavor},
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pages={101--119},
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year={2016},
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publisher={Elsevier}
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}
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@Article{Brincat2004,
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title={Underlying principles of visual shape selectivity in posterior inferotemporal cortex},
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author={Brincat, Scott L and Connor, Charles E},
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journal={Nature Neuroscience},
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volume={7},
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number={8},
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pages={880--886},
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year={2004},
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publisher={Nature Publishing Group US New York}
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}
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@article{Brownell1990,
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title={Outer hair cell electromotility and otoacoustic emissions},
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author={Brownell, William E},
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journal={Ear Hearing},
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volume={11},
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number={2},
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pages={82},
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year={1990},
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publisher={NIH Public Access}
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}
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|
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@ARTICLE{Budelli2000,
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AUTHOR = {Ruben Budelli and Angel A. Caputi},
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TITLE = {The electric image in weakly electric fish: perception of objects of complex impedance.},
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JOURNAL = {Journal of Experimental Biology},
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YEAR = {2000},
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VOLUME = {203},
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PAGES = {481--492}
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}
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@ARTICLE{Budelli2002,
|
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AUTHOR = {R. Budelli and A. Caputi and L. Gomez and D. Rother and K. Grant},
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TITLE = {The electric image of \textit{Gnathonemus petersii}.},
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JOURNAL = {Journal of Physiology-Paris},
|
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YEAR = {2002},
|
||
VOLUME = {96},
|
||
PAGES = {421--429}
|
||
}
|
||
|
||
@ARTICLE{Bullock1969,
|
||
AUTHOR = {Theodore H. Bullock},
|
||
TITLE = {Species differences in effect of electroreceptor input on electric organ pacemakers and other aspects of behavior i
|
||
n electric fish.},
|
||
JOURNAL = BrainBehavEvol,
|
||
YEAR = {1969},
|
||
VOLUME = {2},
|
||
PAGES = {85--118}
|
||
}
|
||
|
||
@article{Bullock1970,
|
||
author = {Bullock, TH},
|
||
journal = JGenPhysiol,
|
||
number = {5},
|
||
pages = {565--584},
|
||
title = {The reliability of neurons.},
|
||
volume = {55},
|
||
year = {1970}
|
||
}
|
||
|
||
@Article{Bullock1972a,
|
||
Title = {The jamming avoidance response of high frequency electric fish. {I.} General Features.},
|
||
Author = {Bullock, Th H and Hamstra, RH and Scheich, H},
|
||
Journal = JCompPhysiol,
|
||
Year = {1972},
|
||
Number = {1},
|
||
Pages = {1--22},
|
||
Volume = {77}
|
||
}
|
||
|
||
@Article{Bullock1972b,
|
||
Title = {The jamming avoidance response of high frequency electric fish. {II.} {Quantitative} aspects.},
|
||
Author = {Bullock, TH and H, RH and Scheich, H},
|
||
Journal = JCompPhysiol,
|
||
Year = {1972},
|
||
Number = {1},
|
||
Pages = {23--48},
|
||
Volume = {77}
|
||
}
|
||
|
||
@ARTICLE{Bullock1972General,
|
||
AUTHOR = {Theodore H. Bullock and Robert H. Hamstra, Jr. and Henning Scheich},
|
||
TITLE = {The jamming avoidance response of high frequency electric fish {I.} General features.},
|
||
JOURNAL = JCompPhysiol,
|
||
YEAR = {1972},
|
||
VOLUME = {77},
|
||
PAGES = {1--22}
|
||
}
|
||
|
||
@Article{Bullock1982,
|
||
Title = {Evolution of electroreception.},
|
||
Author = {T.H. Bullock and R.G. Northcutt and D.A. Bodznick},
|
||
Journal = TINS,
|
||
Year = {1982},
|
||
Pages = {50-53},
|
||
Volume = {5}
|
||
}
|
||
|
||
@ARTICLE{Bullock1983,
|
||
AUTHOR = {T. H. Bullock and D. A. Bodznick and R. G. Northcutt},
|
||
TITLE = {The phylogenetic distribution of electroreception: evidence for convergent evolution of a primitive vertebrate sense modality.},
|
||
YEAR = {1983},
|
||
JOURNAL = BrainResRev,
|
||
VOLUME = {6},
|
||
PAGES = {25--46} }
|
||
|
||
@book{Bullock2006,
|
||
title={Electroreception},
|
||
author={Bullock, Theodore Holmes and Hopkins, Carl D and Fay, Richard R},
|
||
volume={21},
|
||
year={2006},
|
||
publisher={Springer Science \& Business Media}
|
||
}
|
||
|
||
@ARTICLE{Burham1969,
|
||
AUTHOR = {E. G. Burham and W. B. Huckaby and R. Gowdy and B. Burns},
|
||
TITLE = {Microvolt electric signals from fishes and the environment.},
|
||
JOURNAL = Science,
|
||
YEAR = {1969},
|
||
VOLUME = {164},
|
||
PAGES = {965--968}
|
||
}
|
||
|
||
@article{Bushdid2014,
|
||
title={Humans can discriminate more than 1 trillion olfactory stimuli},
|
||
author={Bushdid, Caroline and Magnasco, Marcelo O and Vosshall, Leslie B and Keller, Andreas},
|
||
journal={Science},
|
||
volume={343},
|
||
number={6177},
|
||
pages={1370--1372},
|
||
year={2014},
|
||
publisher={American Association for the Advancement of Science}
|
||
}
|
||
|
||
@article{Cai1996,
|
||
title={Temporal patterns of the responses of auditory-nerve fibers to low-frequency tones},
|
||
author={Cai, Yidao and Geisler, C Daniel},
|
||
journal={Hearing Research},
|
||
volume={96},
|
||
number={1-2},
|
||
pages={83--93},
|
||
year={1996},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@article{Caldwell1978,
|
||
title={New properties of rabbit retinal ganglion cells.},
|
||
author={Caldwell, JH and Daw, NW},
|
||
journal={The Journal of Physiology},
|
||
volume={276},
|
||
number={1},
|
||
pages={257--276},
|
||
year={1978},
|
||
publisher={Wiley Online Library}
|
||
}
|
||
|
||
@ARTICLE{Capurro1997,
|
||
AUTHOR = {A. Capurro and M. Reyes-Parada and D. Olazabal and R. Perrone and R. Silveira and O. Macadar},
|
||
TITLE = {Aggressive behavior and jamming avoidance response in the weakly electric fish \textit{Gymnotus carapo}: effects of {3,4-Methylenedioxymethamphetamine} ({MDMA}).},
|
||
JOURNAL = {Comp Biochem Physiol},
|
||
YEAR = {1997},
|
||
VOLUME = {188A},
|
||
PAGES = {831--840}
|
||
}
|
||
|
||
@ARTICLE{Caputi1998,
|
||
AUTHOR = {Angel A. Caputi and R. Budelli and K. Grant and C. C. Bell},
|
||
TITLE = {The electric image in weakly electric fish: physical images of resistive objects in \textit{Gnathonemus petersii}.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2000},
|
||
VOLUME = {203},
|
||
PAGES = {481--492}
|
||
}
|
||
|
||
|
||
@ARTICLE{Caputi1998Brachy,
|
||
AUTHOR = {A. A. Caputi and A. C. Silva and O. Macadar},
|
||
TITLE = {The electric organ discharge of \textit{Brachyhypopomus pinnicaudatus}. The effects of environmental variables on waveform generation.},
|
||
JOURNAL = BrainBehavEvol,
|
||
YEAR = {1998},
|
||
VOLUME = {52},
|
||
PAGES = {148--158}
|
||
}
|
||
|
||
|
||
@ARTICLE{Caputi1999,
|
||
AUTHOR = {A. A. Caputi},
|
||
TITLE = {The electric organ discharge of pulse gymnotiforms: the transformation of a simple
|
||
impulse into a complex spatiotemporal electromotor pattern.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1999},
|
||
VOLUME = {202},
|
||
PAGES = {1229--1241}
|
||
}
|
||
|
||
@ARTICLE{Caputi2006,
|
||
AUTHOR = {A. A. Caputi and R. Budelli},
|
||
TITLE = {Peripheral electrosensory imaging by weakly electric fish.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {2006},
|
||
VOLUME = {192},
|
||
PAGES = {587--600}
|
||
}
|
||
|
||
@ARTICLE{Caputi2008,
|
||
AUTHOR = {\'Angel A. Caputi and Mar\'ia E. Castell\'o and Pedro A. Aguilera and Carolina Pereira and Javier Nogueira and Alejo Rodr\'iguez-Cattaneo and Carolina Lezcano},
|
||
TITLE = {Active electroreception in \textit{Gymnotus omari}: imaging, object discrimination, and early processing of actively generated signals.},
|
||
JOURNAL = {Journal of Physiology-Paris},
|
||
YEAR = {2008},
|
||
VOLUME = {102},
|
||
PAGES = {256--271}
|
||
}
|
||
|
||
@article{Cariani2001,
|
||
title={Temporal coding of sensory information in the brain},
|
||
author={Cariani, Peter A},
|
||
journal={Acoustical Science and Technology},
|
||
volume={22},
|
||
number={2},
|
||
pages={77--84},
|
||
year={2001},
|
||
publisher={ACOUSTICAL SOCIETY OF JAPAN}
|
||
}
|
||
|
||
@ARTICLE{Carlson2000,
|
||
AUTHOR = {Bruce A. Carlson and Carls D. Hopkins and Peter Thomas},
|
||
TITLE = {Androgen correlates of socially induced changes in the electric organ discharge waveform of a mormyrid fish.},
|
||
JOURNAL = HormBehav,
|
||
YEAR = {2000},
|
||
VOLUME = {38},
|
||
PAGES = {177--186}
|
||
}
|
||
|
||
|
||
|
||
|
||
|
||
@ARTICLE{Carlson2002,
|
||
AUTHOR = {Bruce A. Carlson},
|
||
TITLE = {Electric signaling behavior and the mechanisms of electric organ discharge production in mormyrid fish.},
|
||
JOURNAL = {Journal of Physiology-Paris},
|
||
YEAR = {2002},
|
||
VOLUME = {96},
|
||
PAGES = {405--419}
|
||
}
|
||
|
||
@ARTICLE{Carlson2011,
|
||
AUTHOR = {Bruce A. Carlson and Saad M. Hasan and Michael Hollmann and Derek B. Miller and Luke J. Harmon and Matthew E. Arnegard},
|
||
TITLE = {Brain evolution triggers increased diversification of electric fishes.},
|
||
JOURNAL = Science,
|
||
YEAR = {2011},
|
||
VOLUME = {332},
|
||
PAGES = {583--586}
|
||
}
|
||
|
||
|
||
@Article{Carlson2013,
|
||
Title = {From Sequence to Spike to Spark: Evo-devo-neuroethology of Electric Communication Mormyrid Fishes.},
|
||
Author = {Bruce A Carlson and Jason R. Gallant},
|
||
Journal = JNeuroGenetics,
|
||
Year = {2013},
|
||
Number = {3},
|
||
Pages = {106-129},
|
||
Volume = {27}
|
||
}
|
||
|
||
@Article{Carr1982,
|
||
Title = {Peripheral organization and central projections of the electrosensory nerves in gymnotiform fish.},
|
||
Author = {C. E. Carr and L. Maler and E. Sas},
|
||
Journal = {Journal of Comparative Neurology},
|
||
Year = {1982},
|
||
Pages = {139--153},
|
||
Volume = {211}
|
||
}
|
||
|
||
@Article{Carr1986,
|
||
title={Electroreception in gymnotiform fish: central anatomy and physiology},
|
||
author={Carr, CE},
|
||
journal={Electroreception},
|
||
pages={319--373},
|
||
year={1986},
|
||
publisher={John Wiley}
|
||
}
|
||
|
||
@article{Carriot2017,
|
||
title={Envelope statistics of self-motion signals experienced by human subjects during everyday activities: Implications for vestibular processing},
|
||
author={Carriot, J{\'e}rome and Jamali, Mohsen and Cullen, Kathleen E and Chacron, Maurice J},
|
||
journal={PLoS One},
|
||
volume={12},
|
||
number={6},
|
||
pages={e0178664},
|
||
year={2017},
|
||
publisher={Public Library of Science San Francisco, CA USA}
|
||
}
|
||
|
||
@ARTICLE{Castello2000,
|
||
AUTHOR = {Mar\'ia E. Castell\'o and Pedro A. Aguilera and Omar Trujillo-Cen\'oz and Angel A. Caputi},
|
||
TITLE = {Electroreception in \textit{Gymnotus carapo}: pre-receptor processing and the distribution of electroreceptor types.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2000},
|
||
VOLUME = {203},
|
||
PAGES = {3279--3287}
|
||
}
|
||
|
||
@Article{Catania2014,
|
||
Title = {The shocking predatory strike of the electric eel},
|
||
Author = {Catania, KC},
|
||
Journal = Science,
|
||
Year = {2014},
|
||
Number = {6214},
|
||
Pages = {1231--1234},
|
||
Volume = {346}
|
||
}
|
||
|
||
@Article{Catania2015a,
|
||
Title = {Electric eels use high-voltage to track fast-moving prey},
|
||
Author = {Catania, KC},
|
||
Journal = NatCommun,
|
||
Year = {2015},
|
||
Pages = {8638},
|
||
Volume = {6}
|
||
}
|
||
|
||
@Article{Cattaneo1981,
|
||
title={Patterns in the discharge of simple and complex visual cortical cells},
|
||
author={Cattaneo, A and Maffei, L and Morrone, Concetta},
|
||
journal={Proceedings of the Royal Society of London. Series B. Biological sciences},
|
||
volume={212},
|
||
number={1188},
|
||
pages={279--297},
|
||
year={1981},
|
||
publisher={The Royal Society London}
|
||
}
|
||
|
||
@Article{Cavigelli1999,
|
||
Title = {Behavioural patterns associated with faecal cortisol levels in free-ranging female ring-tailed lemurs, {Lemur catta}},
|
||
Author = {Sonia A. Cavigelli},
|
||
Journal = AnimBehav,
|
||
Year = {1999},
|
||
Number = {4},
|
||
Pages = {935 - 944},
|
||
Volume = {57},
|
||
|
||
Abstract = {The study of physiological stress and its context in free-ranging animals provides a means for understanding the challenges found in the natural habitat. Patterns of physiological stress in free-ranging animals have yet to be well characterized. Methodological difficulties in measuring physiological responses in the natural habitat have limited this area of research. In this research, physiological stress in free-ranging ring-tailed lemurs,Lemur catta, was estimated using a steroid-extraction method to measure cortisol levels from female faeces. Ten females were observed across two social groups in southwestern Madagascar during a 5-month period including portions of the annual wet and dry seasons. I used behavioural measures to estimate predation threat, food accessibility and individual dominance status, to determine whether these variables predict faecal cortisol levels. Faecal cortisol levels were relatively high during two distinct periods: one period coincided with late gestation and the other period corresponded with the end of the dry season, when high-intensity antipredatory behaviour and estimates of feeding effort were elevated. In addition, faecal cortisol measures were significantly correlated with dominance indices: high-index individuals had high cortisol values, and low-index individuals had low cortisol values. These results suggest that faecal cortisol measures can be used to assess seasonal and individual differences in adrenal activity in this lemurid primate, and that this measure could provide a means for quantifying physiological stress in free-ranging animals.},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.27}
|
||
}
|
||
|
||
@article{Chacron2000,
|
||
title={Suprathreshold stochastic firing dynamics with memory in {P-type} electroreceptors},
|
||
author={Chacron, Maurice J and Longtin, Andr{\'e} and St-Hilaire, Martin and Maler, Len},
|
||
journal={Physical Review Letters},
|
||
volume={85},
|
||
number={7},
|
||
pages={1576},
|
||
year={2000},
|
||
publisher={APS}
|
||
}
|
||
|
||
@article{Chacron2001,
|
||
title={Negative interspike interval correlations increase the neuronal capacity for encoding time-dependent stimuli},
|
||
author={Chacron, Maurice J and Longtin, Andre and Maler, Leonard},
|
||
journal={Journal of Neuroscience},
|
||
volume={21},
|
||
number={14},
|
||
pages={5328--5343},
|
||
year={2001},
|
||
publisher={Soc Neuroscience}
|
||
}
|
||
|
||
@Article{Chacron2004,
|
||
title={To burst or not to burst?},
|
||
author={Chacron, Maurice J and Longtin, Andr{\'e} and Maler, Leonard},
|
||
journal={Journal of Computational Neuroscience},
|
||
volume={17},
|
||
pages={127--136},
|
||
year={2004},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@Article{Chacron2005,
|
||
title={Electroreceptor neuron dynamics shape information transmission},
|
||
author={Chacron, Maurice J and Maler, Leonard and Bastian, Joseph},
|
||
journal={Nature Neuroscience},
|
||
volume={8},
|
||
number={5},
|
||
pages={673--678},
|
||
year={2005},
|
||
publisher={Nature Publishing Group US New York}
|
||
}
|
||
|
||
@Article{Chacron2006,
|
||
title={Nonlinear information processing in a model sensory system},
|
||
author={Chacron, Maurice J},
|
||
journal={Journal of Neurophysiology},
|
||
volume={95},
|
||
number={5},
|
||
pages={2933--2946},
|
||
year={2006},
|
||
publisher={American Physiological Society}
|
||
}
|
||
|
||
@Article{Chagnaud2008,
|
||
Title = {Receptive field organization of electrosensory neurons in the paddlefish (\textit{Polyodon spathula}.},
|
||
Author = {B.P. Chagnaud and L.A. Wilkens and M.H. Hofmann},
|
||
Journal = JPhysiol,
|
||
Year = {2008},
|
||
Pages = {246-255},
|
||
Volume = {102}
|
||
}
|
||
|
||
@article{Chakravarthy2018,
|
||
title={Burst spinal cord stimulation: review of preclinical studies and comments on clinical outcomes},
|
||
author={Chakravarthy, Krishnan and Kent, Alexander R and Raza, Adil and Xing, Fang and Kinfe, Thomas M},
|
||
journal={Neuromodulation: Technology at the Neural Interface},
|
||
volume={21},
|
||
number={5},
|
||
pages={431--439},
|
||
year={2018},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@Article{Chan2005,
|
||
title={{Ca2+} current--driven nonlinear amplification by the mammalian cochlea in vitro},
|
||
author={Chan, Dylan K and Hudspeth, AJ},
|
||
journal={Nature Neuroscience},
|
||
volume={8},
|
||
number={2},
|
||
pages={149--155},
|
||
year={2005},
|
||
publisher={Nature Publishing Group US New York}
|
||
}
|
||
|
||
@Article{Chapman1995,
|
||
Title = {Ecological constraints on group size: an analysis of spider monkey and chimpanzee subgroups},
|
||
Author = {Chapman, C. and Chapman, L. and Wrangham, R.},
|
||
Journal = BehavEcolSociobiol,
|
||
Year = {1995},
|
||
Number = {59},
|
||
Volume = {36},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.30}
|
||
}
|
||
|
||
@Article{Charpentier2005,
|
||
Title = {Constraints on control: factors influencing reproductive success in male mandrills ({Mandrillus sphinx})},
|
||
Author = {Charpentier, Marie and Peignot, Patricia and Hossaert-McKey, Martine and Gimenez, Olivier and Setchell, Joanna M. and Wickings, E. Jean},
|
||
Journal = BehavEcol,
|
||
Year = {2005},
|
||
Number = {3},
|
||
Pages = {614-623},
|
||
Volume = {16},
|
||
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.23}
|
||
}
|
||
|
||
@ARTICLE{Chen2005,
|
||
AUTHOR = {Ling Chen and Jonathan L. House and R\"udiger Krahe and Mark E. Nelson},
|
||
TITLE = {Modeling signal and background components of electrosensory scenes.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {2005},
|
||
VOLUME = {191},
|
||
PAGES = {331--345}
|
||
}
|
||
|
||
@article{Cherry1953,
|
||
title={Some experiments on the recognition of speech, with one and with two ears},
|
||
author={Cherry, E Colin},
|
||
journal={The Journal of the Acoustical Society of America},
|
||
volume={25},
|
||
number={5},
|
||
pages={975--979},
|
||
year={1953},
|
||
publisher={acoustical society of America}
|
||
}
|
||
|
||
@Article{Chikkerur2010,
|
||
Title = {What and where: {A Bayesian} inference theory of attention.},
|
||
Author = {Sharat Chikkerur and Thomas Serre and Cheston Tan and Tomaso Poggio},
|
||
Journal = VisionRes,
|
||
Year = {2010},
|
||
Pages = {2233-2247},
|
||
Volume = {50}
|
||
}
|
||
|
||
@Article{Chivers1995,
|
||
Title = {Familiarity and shoal cohesion in fathead minnows ({Pimephales promelas}): implications for antipredator behaviour},
|
||
Author = {Douglas P. Chivers and Grant E. Brown and R. Jan F. Smith},
|
||
Journal = {Can J Zool},
|
||
Year = {1995},
|
||
Pages = {955-960},
|
||
Volume = {73},
|
||
|
||
Doi = {https://doi.org/10.1139/z95-111},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.27}
|
||
}
|
||
|
||
@article{Chocholle1957,
|
||
title={About the sensation of beats between two tones whose frequencies are nearly in a simple ratio},
|
||
author={Chocholle, R and Legouix, JP},
|
||
journal={The Journal of the Acoustical Society of America},
|
||
volume={29},
|
||
number={6},
|
||
pages={750--750},
|
||
year={1957},
|
||
publisher={Acoustical Society of America}
|
||
}
|
||
|
||
@ARTICLE{Clarke2020,
|
||
AUTHOR = {Shelby B. Clarke and Lauren J. Chapman and R\"udiger Krahe},
|
||
TITLE = {The effect of normoxia exposure on hypoxia tolerance and sensory sampling in a swamp-dwelling mormyrid fish.},
|
||
JOURNAL = {Comp Biochem Physiol A},
|
||
YEAR = {2020},
|
||
VOLUME = {240},
|
||
PAGES = {110586}
|
||
}
|
||
|
||
@article{Clevert2015,
|
||
title={{Fast and accurate deep network learning by exponential linear units (ELUs)}},
|
||
author={Clevert, DjorkArn{\'e} and Unterthiner, Thomas and Hochreiter, Sepp},
|
||
journal={arXiv preprint arXiv:1511.07289},
|
||
year={2015}
|
||
}
|
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|
||
Author = {Tobias Egner and Jim M. Monti and Christopher Summerfield},
|
||
Journal = JNeurosci,
|
||
Year = {2010},
|
||
Number = {49},
|
||
Pages = {16601-16608},
|
||
Volume = {30}
|
||
}
|
||
|
||
@Article{Egnor2016,
|
||
Title = {Computational Analysis of Behavior.},
|
||
Author = {S. E. Roian Egnor and Kristin Branson},
|
||
Journal = AnnuRevNeurosci,
|
||
Year = {2016},
|
||
Pages = {217-36},
|
||
Volume = {39},
|
||
|
||
Doi = {10.1146/annurev-neuro-070815-013845},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@article{Elfwing2018,
|
||
title={Sigmoid-weighted linear units for neural network function approximation in reinforcement learning},
|
||
author={Elfwing, Stefan and Uchibe, Eiji and Doya, Kenji},
|
||
journal={Neural Networks},
|
||
volume={107},
|
||
pages={3--11},
|
||
year={2018},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@ARTICLE{Emde1990,
|
||
AUTHOR = {Gerhard von der Emde},
|
||
TITLE = {Discrimination of objects through electrolocation in the weakly electric fish, \textit{Gnathonemus petersii}.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {1990},
|
||
VOLUME = {167},
|
||
PAGES = {413--421}
|
||
}
|
||
|
||
@ARTICLE{Emde1992,
|
||
AUTHOR = {Gerhard von der Emde and Thomas Ringer},
|
||
TITLE = {Electrolocation of capacitive objects in four species of pulse-type weakly electric fish.},
|
||
JOURNAL = {Ethology},
|
||
YEAR = {1992},
|
||
VOLUME = {91},
|
||
PAGES = {326--338}
|
||
}
|
||
|
||
@ARTICLE{Emde1993,
|
||
AUTHOR = {Gerhard von der Emde},
|
||
TITLE = {The sensing of electrical capacitances by weakly electric mormyrid fish: effects of water conductivity.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1993},
|
||
VOLUME = {181},
|
||
PAGES = {157--173}
|
||
}
|
||
|
||
@ARTICLE{Emde1994,
|
||
AUTHOR = {G. von der Emde and B. Ronacher},
|
||
TITLE = {Perception of electric properties of objects in electrolocating weakly electric fish: two-dimensional similarity scaling reveals a {City-Block} metric.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {1994},
|
||
VOLUME = {175},
|
||
PAGES = {801--812}
|
||
}
|
||
|
||
@ARTICLE{Emde1998,
|
||
AUTHOR = {Gerhard von der Emde},
|
||
TITLE = {Capacitance detection in the wave-type electric fish \textit{Eigenmannia} during active electrolocation.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {1998},
|
||
VOLUME = {182},
|
||
PAGES = {217--224}
|
||
}
|
||
|
||
@ARTICLE{Emde1998Distance,
|
||
AUTHOR = {Gerhard von der Emde and Stephan Schwarz and Leonel Gomez and Ruben Budelli and Kirsty Grant},
|
||
TITLE = {Electric fish measure distance in the dark.},
|
||
JOURNAL = Nature,
|
||
YEAR = {1998},
|
||
VOLUME = {395},
|
||
PAGES = {890--894}
|
||
}
|
||
|
||
@INCOLLECTION{Emde2001,
|
||
TITLE = {Electric fields and electroreception: how electrosensory fish perceive their environment.},
|
||
AUTHOR = {Gerhard von der Emde},
|
||
PAGES = {313--329},
|
||
BOOKTITLE = {Ecology of sensing},
|
||
PUBLISHER = {Springer},
|
||
ADDRESS = {Berlin, Heidelberg},
|
||
YEAR = {2001},
|
||
EDITOR = {Friedrich G. Barth and Axel Schmid}
|
||
}
|
||
|
||
|
||
@ARTICLE{Emde2006,
|
||
AUTHOR = {Gerhard von der Emde},
|
||
TITLE = {Non-visual environmental imaging and object detection through active electrolocation in weakly electric fish.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {2006},
|
||
VOLUME = {192},
|
||
PAGES = {601--612}
|
||
}
|
||
|
||
@ARTICLE{Emde2010Signalling,
|
||
AUTHOR = {Gerhard von der Emde},
|
||
TITLE = {Electrolocation of capacitive objects in four species of pulse-type weakly electric fish {II}. electric signalling behaviour.},
|
||
JOURNAL = Ethology,
|
||
YEAR = {1992},
|
||
VOLUME = {92},
|
||
PAGES = {177--192}
|
||
}
|
||
|
||
@Article{Engelmann2010,
|
||
Title = {Coding of stimuli by ampullary afferents in \textit{Gnathonemus petersii}.},
|
||
Author = {J. Engelmann and S. Gertz and J. Goulet and A. Schuh and G. von der Emde},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {2010},
|
||
|
||
Month = {Oct},
|
||
Number = {4},
|
||
Pages = {1955--1968},
|
||
Volume = {104},
|
||
|
||
Abstract = {Weakly electric fish use electroreception for both active and passive electrolocation and for electrocommunication. While both active and passive electrolocation systems are prominent in weakly electric Mormyriform fishes, knowledge of their passive electrolocation ability is still scarce. To better estimate the contribution of passive electric sensing to the orientation toward electric stimuli in weakly electric fishes, we investigated frequency tuning applying classical input-output characterization and stimulus reconstruction methods to reveal the encoding capabilities of ampullary receptor afferents. Ampullary receptor afferents were most sensitive (threshold: 40 μV/cm) at low frequencies (<10 Hz) and appear to be tuned to a mix of amplitude and slope of the input signals. The low-frequency tuning was corroborated by behavioral experiments, but behavioral thresholds were one order of magnitude higher. The integration of simultaneously recorded afferents of similar frequency-tuning resulted in strongly enhanced signal-to-noise ratios and increased mutual information rates but did not increase the range of frequencies detectable by the system. Theoretically the neuronal integration of input from receptors experiencing opposite polarities of a stimulus (left and right side of the fish) was shown to enhance encoding of such stimuli, including an increase of bandwidth. Covariance and coherence analysis showed that spiking of ampullary afferents is sufficiently explained by the spike-triggered average, i.e., receptors respond to a single linear feature of the stimulus. Our data support the notion of a division of labor of the active and passive electrosensory systems in weakly electric fishes based on frequency tuning. Future experiments will address the role of central convergence of ampullary input that we expect to lead to higher sensitivity and encoding power of the system.},
|
||
Institution = {University of Bonn, Institute for Zoology, Neuroethology-Sensory Ecology, Bonn, Germany. Jacob.Engelmann@uni-bielefeld.de},
|
||
Keywords = {Action Potentials; Animals; Electric Fish; Electric Stimulation; Female; Hair Cells, Ampulla; Male; Neurons, Afferent; Random Allocation},
|
||
Timestamp = {2011.10.12}
|
||
}
|
||
|
||
@ARTICLE{Enger1968,
|
||
AUTHOR = {Per S. Enger and Thomas Szabo},
|
||
TITLE = {Effect of temperature on the discharge rates of the electric organ of some gymnotids.},
|
||
JOURNAL = CompBiochemPhysiol,
|
||
YEAR = {1968},
|
||
VOLUME = {27},
|
||
PAGES = {625--627}
|
||
}
|
||
|
||
@Article{Engh2002,
|
||
Title = {Reproductive skew among males in a female-dominated mammalian society},
|
||
Author = {Engh, Anne L. and Funk, Stephan M. and Horn, Russell C. Van and Scribner, Kim T. and Bruford, Michael W. and Libants, Scot and Szykman, Micaela and Smale, Laura and Holekamp, Kay E.},
|
||
Journal = BehavEcol,
|
||
Year = {2002},
|
||
Number = {2},
|
||
Pages = {193-200},
|
||
Volume = {13},
|
||
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.23}
|
||
}
|
||
|
||
@Article{Engler2000,
|
||
Title = {Spontaneous modulations of the electric organ discharge in the weakly electric fish, \textit{Apteronotus leptorhynchus}: a biophysical and behavioral analysis},
|
||
Author = {Engler, G. and Fogarty, C.M. and Banks, J.R. and Zupanc, G.K.H.},
|
||
Journal = {Journal of Comparative Physiology},
|
||
Year = {2000},
|
||
Number = {7},
|
||
Pages = {645--660},
|
||
Volume = {186},
|
||
Owner = {raab},
|
||
Timestamp = {2017.05.04}
|
||
}
|
||
|
||
@Article{Engler2001,
|
||
Title = {Differential production of chirping behavior evoked by electrical stimulation of the weakly electric fish, \textit{Apteronotus leptorhynchus}.},
|
||
Author = {Engler, G and Zupanc, G K},
|
||
Journal = {Journal of Comparative Physiology A},
|
||
Year = {2001},
|
||
Number = {9},
|
||
Pages = {747--756},
|
||
Volume = {187}
|
||
}
|
||
|
||
@ARTICLE{Escamilla2019,
|
||
AUTHOR = {Carolina Escamilla-Pinilla and Jos\'e Iv\'an Mojica and Jorge Molina},
|
||
TITLE = {Spatial and temporal distribution of \textit{Gymnorhamphichthys rondoni} ({Gymnotiformes}: {Rhamphichthyidae}) in a long-term study of an Amazonian terra firme stream, {Leticia} - {Colombia}.},
|
||
JOURNAL = {Neotropical Ichtyology},
|
||
YEAR = {2019},
|
||
VOLUME = {17},
|
||
PAGES = {e190006}
|
||
}
|
||
|
||
@article{Evans1972,
|
||
title={The frequency response and other properties of single fibres in the guinea-pig cochlear nerve},
|
||
author={Evans, EF1331164},
|
||
journal={The Journal of Physiology},
|
||
volume={226},
|
||
number={1},
|
||
pages={263--287},
|
||
year={1972},
|
||
publisher={Wiley Online Library}
|
||
}
|
||
|
||
@incollection{Evans1981,
|
||
title={The dynamic range problem: place and time coding at the level of cochlear nerve and nucleus},
|
||
author={Evans, EF},
|
||
booktitle={Neuronal Mechanisms of Hearing},
|
||
pages={69--85},
|
||
year={1981},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@article{Ewert2000,
|
||
title={Characterizing frequency selectivity for envelope fluctuations},
|
||
author={Ewert, Stephan D and Dau, Torsten},
|
||
journal={The Journal of the Acoustical Society of America},
|
||
volume={108},
|
||
number={3},
|
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pages={1181--1196},
|
||
year={2000},
|
||
publisher={Acoustical Society of America}
|
||
}
|
||
|
||
@ARTICLE{Fechler2013,
|
||
AUTHOR = {Katharina Fechler and Gerhard von der Emde},
|
||
TITLE = {Figure–ground separation during active electrolocation in the weakly electric fish, \textit{Gnathonemus petersii}.},
|
||
JOURNAL = {Journal of Physiology-Paris},
|
||
YEAR = {2013},
|
||
VOLUME = {107},
|
||
PAGES = {72--83}
|
||
}
|
||
|
||
@Article{Fenske2006,
|
||
Title = {Top-down facilitation of visual object recognition: object-based and context-based contributions.},
|
||
Author = {Mark J. Fenske and Elissa Aminoff and Nurit Gronau and Moshe Bar},
|
||
Journal = ProgBrainRes,
|
||
Year = {2006},
|
||
Pages = {3-21},
|
||
Volume = {155}
|
||
}
|
||
|
||
@Article{Fernald2014,
|
||
Title = {Communication about social status},
|
||
Author = {Russell D Fernald},
|
||
Journal = CurrOpinNeurobiol,
|
||
Year = {2014},
|
||
Note = {SI: Communication and language},
|
||
Pages = {1 - 4},
|
||
Volume = {28},
|
||
|
||
Abstract = {Dominance hierarchies are ubiquitous in social species and serve to organize social systems. Social and sexual status is communicated directly among animals via sensory systems evolved in the particular species. Such signals may be chemical, visual, auditory, postural or a combination of signals. In most species, status is initially established through physical conflict between individuals that leads to ritualized conflict or threats, reducing possibly dangerous results of fighting. Many of the status signals contain other information, as in some bird species that communicate both the size of their group and their individual rank vocally. Recent studies have shown that scent signaling among hyenas of east Africa is unique, being produced by fermentative, odor producing bacteria residing in the scent glands.},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.23},
|
||
}
|
||
|
||
@ARTICLE{Ferraris2017,
|
||
AUTHOR = {Ferraris, Jr., C. J. and C. D. de Santana and R. P. Vari},
|
||
TITLE = {Checklist of Gymnotiformes ({Osteichthyes: Ostariophysi}) and catalogue of primary types.},
|
||
JOURNAL = {Neotropical Ichthyology},
|
||
YEAR = {2017},
|
||
VOLUME = {15},
|
||
PAGES = {1--44}
|
||
}
|
||
|
||
@inproceedings{Ferwerda1996,
|
||
title={A model of visual adaptation for realistic image synthesis},
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author={Ferwerda, James A and Pattanaik, Sumanta N and Shirley, Peter and Greenberg, Donald P},
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booktitle={Proceedings of the 23rd annual conference on computer graphics and interactive techniques},
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pages={249--258},
|
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year={1996}
|
||
}
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|
||
@ARTICLE{Feulner2009,
|
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AUTHOR = {Philine G. D. Feulner and Martin Plath and Jacob Engelmann and Frank Kirschbaum and Ralph Tiedemann},
|
||
TITLE = {Electrifying love: electricfish use species-specificdischarge formate recognition.},
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JOURNAL = BiolLett,
|
||
YEAR = {2009},
|
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VOLUME = {5},
|
||
PAGES = {225--228}
|
||
}
|
||
|
||
@Article{Field1994,
|
||
Title = {What Is the Goal of Sensory Coding?},
|
||
Author = {David J. Field},
|
||
Journal = NeuralComput,
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||
Year = {1994},
|
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Pages = {559-601},
|
||
Volume = {6}
|
||
}
|
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|
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@Article{Fischer2011,
|
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Title = {Owl's behavior and neural representation predicted by Bayesian inference.},
|
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Author = {Brain Fischer and Jos\'e Luis Pena},
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||
Journal = {Nature Neuroscience},
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Year = {2011},
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Pages = {1061--1067},
|
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Volume = {14}
|
||
}
|
||
|
||
@article{Fleischer2010,
|
||
title={Compliance profiles derived from a three-dimensional finite-element model of the basilar membrane},
|
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author={Fleischer, Mario and Schmidt, Rolf and Gummer, Anthony W},
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journal={The Journal of the Acoustical Society of America},
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volume={127},
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number={5},
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pages={2973--2991},
|
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year={2010},
|
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publisher={Acoustical Society of America}
|
||
}
|
||
|
||
|
||
@article{Ford1973,
|
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title={Divergence and evolution in {Darwin's} finches},
|
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author={Ford, Hugh A and Parkin, David T and Ewing, Alastair W},
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journal={Biological Journal of the Linnean Society},
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volume={5},
|
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number={3},
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pages={289--295},
|
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year={1973},
|
||
publisher={Oxford University Press}
|
||
}
|
||
|
||
@Article{Foster1985,
|
||
title={{Spatial and temporal frequency selectivity of neurones in visual cortical areas V1 and V2 of the macaque monkey.}},
|
||
author={Foster, KH and Gaska, James P and Nagler, M and Pollen, DA},
|
||
journal={The Journal of Physiology},
|
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volume={365},
|
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number={1},
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pages={331--363},
|
||
year={1985},
|
||
publisher={Wiley Online Library}
|
||
}
|
||
|
||
@Article{Fotowat2013,
|
||
author = {Fotowat, H and Harrison, RR. and Krahe, R},
|
||
journal = {Journal of Neuroscience},
|
||
number = {34},
|
||
pages = {13758--13772},
|
||
title = {Statistics of the electrosensory input in the freely swimming weakly electric fish \textit{Apteronotus leptorhynchus}.},
|
||
volume = {33},
|
||
year = {2013}
|
||
}
|
||
|
||
@article {Fourcaud-Trocme2003,
|
||
author = {Fourcaud-Trocm{\'e}, Nicolas and Hansel, David and van Vreeswijk, Carl and Brunel, Nicolas},
|
||
title = {How Spike Generation Mechanisms Determine the Neuronal Response to Fluctuating Inputs},
|
||
volume = {23},
|
||
number = {37},
|
||
pages = {11628--11640},
|
||
year = {2003},
|
||
publisher = {Society for Neuroscience},
|
||
abstract = {This study examines the ability of neurons to track temporally varying inputs, namely by investigating how the instantaneous firing rate of a neuron is modulated by a noisy input with a small sinusoidal component with frequency (f). Using numerical simulations of conductance-based neurons and analytical calculations of one-variable nonlinear integrate-and-fire neurons, we characterized the dependence of this modulation on f. For sufficiently high noise, the neuron acts as a low-pass filter. The modulation amplitude is approximately constant for frequencies up to a cutoff frequency, fc, after which it decays. The cutoff frequency increases almost linearly with the firing rate. For higher frequencies, the modulation amplitude decays as C/fα, where the power α depends on the spike initiation mechanism. For conductance-based models, α = 1, and the prefactor C depends solely on the average firing rate and a spike {\textquotedblleft}slope factor,{\textquotedblright} which determines the sharpness of the spike initiation. These results are attributable to the fact that near threshold, the sodium activation variable can be approximated by an exponential function. Using this feature, we propose a simplified one-variable model, the {\textquotedblleft}exponential integrate-and-fire neuron,{\textquotedblright} as an approximation of a conductance-based model. We show that this model reproduces the dynamics of a simple conductance-based model extremely well. Our study shows how an intrinsic neuronal property (the characteristics of fast sodium channels) determines the speed with which neurons can track changes in input.},
|
||
issn = {0270-6474},
|
||
journal = {Journal of Neuroscience}
|
||
}
|
||
|
||
@ARTICLE{Franchina1998,
|
||
AUTHOR = {C. R. Franchina and P. K. Stoddard},
|
||
TITLE = {Plasticity of the electric organ discharge waveform of the electric fish \textit{Brachyhypopomus pinnicaudatus} {I.} Quantification of day-night changes.},
|
||
JOURNAL = JCompPhysiolA,
|
||
YEAR = {1998},
|
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VOLUME = {183},
|
||
PAGES = {759--768}
|
||
}
|
||
|
||
@Article{Freeman2013,
|
||
Title = {A functional and perceptual signature of the second visual area in primates.},
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Author = {Jeremy Freeman and Corey M. Ziemba and David H. Heeger and Eero P. Simoncelli and J. Anthony Movshon},
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||
Journal = {Nature Neuroscience},
|
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Year = {2013},
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Number = {7},
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Pages = {doi:10.1038/nn.3402.},
|
||
Volume = {16}
|
||
}
|
||
|
||
@article{French1973,
|
||
title={Measuring the Wiener kernels of a non-linear system using the fast {Fourier} transform algorithm},
|
||
author={French, AS and Butz, EG},
|
||
journal={International Journal of Control},
|
||
volume={17},
|
||
number={3},
|
||
pages={529--539},
|
||
year={1973},
|
||
publisher={Taylor \& Francis}
|
||
}
|
||
|
||
@article{French1976,
|
||
title={Practical nonlinear system analysis by {Wiener} kernel estimation in the frequency domain},
|
||
author={French, AS},
|
||
journal={Biological Cybernetics},
|
||
volume={24},
|
||
number={2},
|
||
pages={111--119},
|
||
year={1976},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@article{Marmarelis1999,
|
||
title={Principal dynamic mode analysis of nonlinear transduction in a spider mechanoreceptor},
|
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author={Marmarelis, Vasilis Z and Juusola, Mikko and French, Andrew S},
|
||
journal={Annals of biomedical engineering},
|
||
volume={27},
|
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pages={391--402},
|
||
year={1999},
|
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publisher={Springer}
|
||
}
|
||
|
||
@Article{Freund2002,
|
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Title = {Behavioral Stochastic Resonance: How the Noise from a Daphnia Swarm Enhances Individual Prey Capture by Juvenile Paddlefish.},
|
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Author = {Jan A. Freund and Lutz Schimanski-Geier and Beatrix Beisner and Alexander Neiman and David F. Russell and Tatyana Yakusheva and Frank Moss},
|
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Journal = JTheorBiol,
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Year = {2002}
|
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}
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|
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@Article{Friard2016,
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Title = {{BORIS}: a free, versatile open-source event-logging software for video/audio coding and live observations},
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Author = {Friard, Olivier and Gamba, Marco},
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Journal = {Methods in Ecology and Evolution},
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Year = {2016},
|
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Number = {11},
|
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Pages = {1325-1330},
|
||
Volume = {7}
|
||
}
|
||
|
||
@ARTICLE{Friedman1996,
|
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AUTHOR = {M. A. Friedman and C. D. Hopkins},
|
||
TITLE = {Tracking individual mormyrid electric fish in the field using electric organ discharge waveforms.},
|
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JOURNAL = AnimBehav,
|
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YEAR = {1996},
|
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VOLUME = {51},
|
||
PAGES = {391--407}
|
||
}
|
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|
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@Article{Froudarakis2014,
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Title = {Population code in mouse {V1} facilitates readout of natural scenes through increased sparseness.},
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Author = {Emmanouil Froudarakis and Philipp Berens and Alexander S Ecker and R James Cotton and Fabian H Sinz and Dimitri Yatsenko and Peter Saggau and Matthias Bethge and Andreas S Tolias},
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Journal = {Nature Neuroscience},
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Year = {2014},
|
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Pages = {doi:10.1038/nn.3707},
|
||
Volume = {Advance online publication}
|
||
}
|
||
|
||
@ARTICLE{Fugere2010,
|
||
AUTHOR = {Vincent Fug\`ere and R\"udiger Krahe},
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Journal = MicroscResTech,
|
||
Year = {2004},
|
||
Pages = {351--374},
|
||
Volume = {63}
|
||
}
|
||
|
||
@article{Henninger2017,
|
||
title={Court and spark in the wild: communication at the limits of sensation},
|
||
author={Henninger, J{\"o}rg and Kirschbaum, Frank and Grewe, Jan and Krahe, Ruediger and Benda, Jan},
|
||
journal={bioRxiv:114249},
|
||
year={2017},
|
||
publisher={Cold Spring Harbor Laboratory},
|
||
elocation-id = {114249},
|
||
year = {2017},
|
||
doi = {10.1101/114249},
|
||
abstract = {Sensory systems evolve in the ecological niches each species is occupying. Accordingly, the tuning of sensory neurons is expected to be adapted to the statistics of natural stimuli. For an unbiased quantification of sensory scenes we tracked natural communication behavior of the weakly electric fish Apteronotus rostratus in their Neotropical rainforest habitat with high spatio-temporal resolution over several days. In the context of courtship and aggression we observed large quantities of electrocommunication signals. Echo responses and acknowledgment signals clearly demonstrated the behavioral relevance of these signals. The known tuning properties of peripheral electrosensory neurons suggest, however, that they are barely activated by these obviously relevant signals. Frequencies of courtship signals are clearly mismatched with the frequency tuning of neuronal population activity. Our results emphasize the importance of quantifying sensory scenes derived from freely behaving animals in their natural habitats for understanding the evolution and function of neural systems.},
|
||
URL = {https://www.biorxiv.org/content/early/2017/08/12/114249},
|
||
eprint = {https://www.biorxiv.org/content/early/2017/08/12/114249.full.pdf},
|
||
journal = {bioRxiv}
|
||
}
|
||
|
||
|
||
@Article{Henninger2018,
|
||
Title = {Statistics of natural communication signals observed in the wild identify important yet neglected stimulus regimes in weakly electric fish.},
|
||
Author = {J\"org Henninger and R\"udiger Krahe and Frank Kirschbaum and Jan Grewe and Jan Benda},
|
||
Journal = {Journal of Neuroscience},
|
||
Year = {2018},
|
||
Pages = {5456--5465},
|
||
Volume = {38}
|
||
}
|
||
|
||
@Article{Henninger2020,
|
||
Title = {Tracking activity patterns of a multispecies community of gymnotiform weakly electric fish in their neotropical habitat without tagging},
|
||
Author = {Henninger, J{\"o}rg and Krahe, R{\"u}diger and Sinz, Fabian and Benda, Jan},
|
||
Journal = {Journal of Experimental Biology},
|
||
Year = {2020},
|
||
Volume = {223},
|
||
|
||
Abstract = {Field studies on freely behaving animals commonly require tagging and often are focused on single species. Weakly electric fish generate a species- and individual-specific electric organ discharge (EOD) and therefore provide a unique opportunity for individual tracking without tagging. Here, we present and test tracking algorithms based on recordings with submerged electrode arrays. Harmonic structures extracted from power spectra provide fish identity. Localization of fish based on weighted averages of their EOD amplitudes is found to be more robust than fitting a dipole model. We apply these techniques to monitor a community of three species, \textit{Apteronotus rostratus}, Eigenmannia humboldtii and Sternopygus dariensis, in their natural habitat in Dari{\'e}n, Panama. We found consistent upstream movements after sunset followed by downstream movements in the second half of the night. Extrapolations of these movements and estimates of fish density obtained from additional transect data suggest that some fish cover at least several hundreds of meters of the stream per night. Most fish, including E. humboldtii, were traversing the electrode array solitarily. From in situ measurements of the decay of the EOD amplitude with distance of individual animals, we estimated that fish can detect conspecifics at distances of up to 2 m. Our recordings also emphasize the complexity of natural electrosensory scenes resulting from the interactions of the EODs of different species. Electrode arrays thus provide an unprecedented window into the so-far hidden nocturnal activities of multispecies communities of weakly electric fish at an unmatched level of detail.},
|
||
Pages = {jeb206342},
|
||
Owner = {raab},
|
||
Publisher = {The Company of Biologists Ltd},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@article{Henry2017,
|
||
title={What can we learn about beat perception by comparing brain signals and stimulus envelopes?},
|
||
author={Henry, Molly J and Herrmann, Bj{\"o}rn and Grahn, Jessica A},
|
||
journal={PLoS One},
|
||
volume={12},
|
||
number={2},
|
||
pages={e0172454},
|
||
year={2017},
|
||
publisher={Public Library of Science San Francisco, CA USA}
|
||
}
|
||
|
||
@article{Hind1967,
|
||
title={Coding of information pertaining to paired low-frequency tones in single auditory nerve fibers of the squirrel monkey.},
|
||
author={Hind, JOSEPH E and Anderson, DAVID J and Brugge, JOHN F and Rose, JERZY E},
|
||
journal={Journal of Neurophysiology},
|
||
volume={30},
|
||
number={4},
|
||
pages={794--816},
|
||
year={1967}
|
||
}
|
||
|
||
|
||
@Article{Hirabayashi2014,
|
||
Title = {Computational principles of microcircuits for visual object processing in the macaque temporal cortex.},
|
||
Author = {Toshiyuki Hirabayashi and Yasushi Miyashita},
|
||
Journal = TINS,
|
||
Year = {2014},
|
||
Number = {3},
|
||
Pages = {178-187},
|
||
Volume = {37}
|
||
}
|
||
|
||
@Article{Hladnik2023,
|
||
AUTHOR = {T. C. Hladnik and J. Grewe},
|
||
TITLE = {Receptive field sizes and neuronal encoding bandwidth are constrained by axonal conduction delays},
|
||
JOURNAL = {PLoS Computational Biology},
|
||
YEAR = {2023},
|
||
NUMBER = {19},
|
||
VOLUME = {8},
|
||
Doi = {https://doi.org/
|
||
10.1371/journal.pcbi.1010871}
|
||
}
|
||
|
||
@Article{Hodgkin1952,
|
||
Title = {A Quantitative Description of Membrane Current and its Application to Conduction and Excitation in Nerve.},
|
||
Author = {A. L. Hodgkin and A. F. Huxley},
|
||
Journal = JPhysiol,
|
||
Year = {1952},
|
||
Pages = {500--544},
|
||
Volume = {117}
|
||
}
|
||
|
||
@Article{Hofmann2008,
|
||
Title = {Response properties of electrosensory units in the midbrain tectum of the paddlefish {(Polyodon spathula Walbaum)}.},
|
||
Author = {M.H. Hofmann and S.N. Jung and U. Siebenaller and M. Prei{\ss}ner and B.P. Chagnaud and L.A. Wilkens},
|
||
Journal = {Journal of Experimental Biology},
|
||
Year = {2008},
|
||
Pages = {773-779},
|
||
Volume = {211}
|
||
}
|
||
|
||
@ARTICLE{Hofmann2013,
|
||
AUTHOR = {Volker Hofmann and Juan I. Sanguinetti-Scheck and Leonel G\'omez-Sena and Jacob Engelmann},
|
||
TITLE = {From static electric images to electric flow: Towards dynamic perceptual cues
|
||
in active electroreception.},
|
||
JOURNAL = {Journal of Physiology-Paris},
|
||
YEAR = {2013},
|
||
VOLUME = {107},
|
||
PAGES = {95--106}
|
||
}
|
||
|
||
@ARTICLE{Hofmann2017,
|
||
AUTHOR = {Volker Hofmann and Juan I. Sanguinetti-Scheck and Leonel G\'omez-Sena and Jacob Engelmann},
|
||
TITLE = {Flow as a basis for a novel distance cue in freely behaving electric fish.},
|
||
JOURNAL = JNeurosci,
|
||
YEAR = {2017},
|
||
VOLUME = {37},
|
||
PAGES = {302--312}
|
||
}
|
||
|
||
@Article{Hojesjo1998,
|
||
Title = {The importance of being familiar: individual recognition and social behavior in sea trout {(Salmo trutta)}},
|
||
Author = {H\"ojesj\"o, Johan and Johnsson, J\"orgen I. and Petersson, Erik and J\"arvi, Torbj\"orn},
|
||
Journal = BehavEcol,
|
||
Year = {1998},
|
||
Number = {5},
|
||
Pages = {445-451},
|
||
Volume = {9},
|
||
|
||
Doi = {https://doi.org/10.1093/beheco/9.5.445},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.27}
|
||
}
|
||
|
||
|
||
@ARTICLE{Hopkins1972,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Sex differences in electric signaling in an electric fish.},
|
||
JOURNAL = Science,
|
||
YEAR = {1972},
|
||
VOLUME = {176},
|
||
PAGES = {1035--1037}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1974Eigen,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Electric communication: functions in the social behavior of \textit{Eigenmannia virescens}.},
|
||
JOURNAL = {Behavior},
|
||
YEAR = {1974},
|
||
VOLUME = {50},
|
||
PAGES = {270--304}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1974Sterno,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Electric communication in the reproductive behavior of \textit{Sternopygus macrurus} {(Gymnotoidei)}.},
|
||
JOURNAL = {Zeitschrift für Tierpsychologie},
|
||
YEAR = {1974},
|
||
VOLUME = {35},
|
||
PAGES = {518--535}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1976,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Stimulus filtering and electroreception: tuberous electroreceptors in three species of gymnotoid fish.},
|
||
JOURNAL = {Journal of Comparative Physiology},
|
||
YEAR = {1976},
|
||
VOLUME = {111},
|
||
PAGES = {171--207}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1978,
|
||
AUTHOR = {Carl D. Hopkins and Walter F. Heiligenberg},
|
||
TITLE = {Evolutionary designs for electric signals and electroreceptors in gymnotoid fishes of {Surinam}.},
|
||
JOURNAL = BehavEcolSociobiol,
|
||
YEAR = {1978},
|
||
VOLUME = {3},
|
||
PAGES = {113--134}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1980,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Evolution of electric communication channels of mormyrids.},
|
||
JOURNAL = BehavEcolSociobiol,
|
||
YEAR = {1980},
|
||
VOLUME = {7},
|
||
PAGES = {1--13}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1981,
|
||
AUTHOR = {Carl D. Hopkins and Andrew H. Bass},
|
||
TITLE = {Temporal coding of species recognition signals in an electric fish.},
|
||
JOURNAL = Science,
|
||
YEAR = {1981},
|
||
VOLUME = {212},
|
||
PAGES = {85--87}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1986Temporal,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Temporal strucuture of non-propagated electric communication signals.},
|
||
JOURNAL = BrainBehavEvol,
|
||
YEAR = {1986},
|
||
VOLUME = {28},
|
||
PAGES = {43--59}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1986Time,
|
||
AUTHOR = {Carl D. Hopkins and G. W. Max Westby},
|
||
TITLE = {Time domain processing of electric organ discharge waveforms by pulse-type electric fish.},
|
||
JOURNAL = BrainBehavEvol,
|
||
YEAR = {1986},
|
||
VOLUME = {29},
|
||
PAGES = {77--104}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1990,
|
||
AUTHOR = {Carl D. Hopkins and Nathaniel C. Comfort and Joseph Bastian and Andreas H. Bass},
|
||
TITLE = {Functional analysis of sexual dimorphism in an electric fish, \textit{Hypopomus pinnicaudatus}, order {Gymnotiformes}.},
|
||
JOURNAL = BrainBehavEvol,
|
||
YEAR = {1990},
|
||
VOLUME = {35},
|
||
PAGES = {350--367}
|
||
}
|
||
|
||
@ARTICLE{Hopkins1999,
|
||
AUTHOR = {Carl D. Hopkins},
|
||
TITLE = {Design features for electric communication.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1999},
|
||
VOLUME = {202},
|
||
PAGES = {1217--128}
|
||
}
|
||
|
||
@ARTICLE{Hoshimiya1980,
|
||
AUTHOR = {N. Hoshimiya and K. Shogen and T. Matsuo and S. Chichibu},
|
||
TITLE = {The \textit{Apteronotus} {EOD} field: waveform and {EOD} field simulation},
|
||
JOURNAL = JCompPhysiol,
|
||
YEAR = {1980},
|
||
VOLUME = {135},
|
||
PAGES = {283--290}
|
||
}
|
||
|
||
@Article{Hosoya2005,
|
||
Title = {Dynamic predictive coding by the retina.},
|
||
Author = {Toshihiko Hosoya and Stephen A. Baccus and Markus Meister},
|
||
Journal = Nature,
|
||
Year = {2005},
|
||
Pages = {71-77},
|
||
Volume = {436}
|
||
}
|
||
|
||
@ARTICLE{Howard1988,
|
||
AUTHOR = {J. Howard and A. J. Hudspeth},
|
||
TITLE = {Compliance of the hair bundle associated with gating of mechanoelectrical transduction channels in the bullfrog's saccular hair cell.},
|
||
YEAR = {1988},
|
||
JOURNAL = {Neuron},
|
||
VOLUME = {1},
|
||
PAGES = {189--199} }
|
||
|
||
@Article{Hubel1959,
|
||
title={Receptive fields of single neurones in the cat's striate cortex},
|
||
author={Hubel, David H and Wiesel, Torsten N},
|
||
journal={The Journal of Physiology},
|
||
volume={148},
|
||
number={3},
|
||
pages={574},
|
||
year={1959},
|
||
publisher={Wiley-Blackwell}
|
||
}
|
||
|
||
@article{Hubel1962,
|
||
title={Receptive fields, binocular interaction and functional architecture in the cat's visual cortex},
|
||
author={Hubel, David H and Wiesel, Torsten N},
|
||
journal={The Journal of Physiology},
|
||
volume={160},
|
||
number={1},
|
||
pages={106},
|
||
year={1962},
|
||
publisher={Wiley-Blackwell}
|
||
}
|
||
|
||
@article{Hubel1965,
|
||
title={Receptive fields and functional architecture in two nonstriate visual areas (18 and 19) of the cat},
|
||
author={Hubel, David H and Wiesel, Torsten N},
|
||
journal={Journal of Neurophysiology},
|
||
volume={28},
|
||
number={2},
|
||
pages={229--289},
|
||
year={1965}
|
||
}
|
||
|
||
@article{Hudspeth1988kinetic,
|
||
title={{Kinetic analysis of voltage-and ion-dependent conductances in saccular hair cells of the bull-frog, Rana catesbeiana.}},
|
||
author={Hudspeth, AJ and Lewis, RS},
|
||
journal={The Journal of Physiology},
|
||
volume={400},
|
||
number={1},
|
||
pages={237--274},
|
||
year={1988},
|
||
publisher={Wiley Online Library}
|
||
}
|
||
|
||
@article{Hudspeth1988model,
|
||
title={A model for electrical resonance and frequency tuning in saccular hair cells of the bull-frog, {Rana catesbeiana}.},
|
||
author={Hudspeth, AJ and Lewis, RS},
|
||
journal={J Physiol},
|
||
volume={400},
|
||
number={1},
|
||
pages={275--297},
|
||
year={1988},
|
||
publisher={Wiley Online Library}
|
||
}
|
||
|
||
@Article{Huetz2011,
|
||
Title = {Neural codes in the thalamocortical auditory system: from artificial stimuli to communication sounds.},
|
||
Author = {Chlo\'e Huetz and Boris Gour\'evitch and Jean-Marc Edeline},
|
||
Journal = HearRes,
|
||
Year = {2011},
|
||
Pages = {147-158},
|
||
Volume = {271}
|
||
}
|
||
|
||
@Article{Hughey2018,
|
||
Title = {Challenges and solutions for studying collective animal behaviour in the wild},
|
||
Author = {Hughey, Lacey F. and Hein, Andrew M. and Strandburg-Peshkin, Ariana and Jensen, Frants H.},
|
||
Journal = PhilTransRSocLondBBiolSci,
|
||
Year = {2018},
|
||
Number = {1746},
|
||
Volume = {373},
|
||
|
||
Doi = {10.1098/rstb.2017.0005},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@article{Hunter2007,
|
||
title={Matplotlib: A 2D graphics environment},
|
||
author={Hunter, John D},
|
||
journal={Computing in science \& engineering},
|
||
volume={9},
|
||
number={3},
|
||
pages={90--95},
|
||
year={2007},
|
||
publisher={IEEE Computer Society}
|
||
}
|
||
|
||
@Article{Hupe2008,
|
||
Title = {Electrocommunication signals in free swimming brown ghost knifefish, \textit{Apteronotus leptorhynchus}},
|
||
Author = {Ginette Hup\'e and John Lewis},
|
||
Journal = {Journal of Experimental Biology},
|
||
Year = {2008},
|
||
Pages = {1657-67},
|
||
Volume = {211},
|
||
|
||
Doi = {10.1242/jeb.013516},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@ARTICLE{Hupe2008DF,
|
||
AUTHOR = {Ginette J. Hup\'e and John E. Lewis and Jan Benda},
|
||
TITLE = {The effect of difference frequency on electrocommunication: chirp production and encoding in a species of weakly electric fish, \textit{Apteronotus leptorhynchus}.},
|
||
YEAR = {2008},
|
||
JOURNAL = {Journal of Physiology-Paris},
|
||
VOLUME = {102},
|
||
NUMBER = {4--6},
|
||
PAGES = {164--172} }
|
||
|
||
@Article{Izhikevich2000,
|
||
title={Neural excitability, spiking and bursting},
|
||
author={Izhikevich, Eugene M},
|
||
journal={International Journal of Bifurcation and Chaos},
|
||
volume={10},
|
||
number={06},
|
||
pages={1171--1266},
|
||
year={2000},
|
||
publisher={World Scientific}
|
||
}
|
||
|
||
@book{Izhikevich2007,
|
||
title={Dynamical systems in neuroscience},
|
||
author={Izhikevich, Eugene M},
|
||
year={2007},
|
||
publisher={MIT press}
|
||
}
|
||
|
||
@Article{Janson1985,
|
||
Title = {Aggresive competition and individual food consumption in wild brown capuchin monkeys ({Cebus apella})},
|
||
Author = {Janson, Charles},
|
||
Journal = BehavEcolSociobiol,
|
||
Year = {1985},
|
||
Number = {2},
|
||
Pages = {125--138},
|
||
Volume = {18},
|
||
|
||
Abstract = {The impact of aggresive competition on food intake at all the resources used is analysed for every member of a group of brown capuchin monkeys (Cebus apella) in the Manu National Park, Peru, where they live in groups of 8--14 animals. An individual's food intake at a given tree was affected independently both by its domirance rank (Fig. 1) and by how much aggression it received (Table 5). Food intake was not strongly affected by body size when dominance rank was held constant by partial correlation. At food sources where high rates of fighting occurred, an individual's food intake depended more on its domirance status than on the rate of aggression it received (Fig. 2). However, food intake at resources where rates of fighting were low depended mostly on the rate of aggression received. When aggression over food was absent, the food intakes of dominants and subordinates were equal. Dominants had significantly greater total energy intake (20.5{\%} more) than did subordinates, even though more than one third of their diet came from food sources where little or no fighting occurred (Fig. 3). Energy intake was also significantly greater for individuals that received little aggression. The only adult that emigrated from the rescue_local_eod study group was the individua with the lowest energy intake. Competition for food within groups was more than ten times as intense as competition between brown capuchin groups.},
|
||
Day = {01},
|
||
Doi = {10.1007/BF00299041},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21},
|
||
Url = {https://doi.org/10.1007/BF00299041}
|
||
}
|
||
|
||
@article{Janson2022,
|
||
title={Motive-modulated attentional orienting: Implicit power motive predicts attentional avoidance of signals of interpersonal dominance.},
|
||
author={Janson, Kevin T and K{\"o}llner, Martin G and Khalaidovski, Ksenia and P{\"u}lschen, Lea-Sarah and Rudnaya, Alexandra and Stamm, Laura and Schultheiss, Oliver C},
|
||
journal={Motivation Science},
|
||
volume={8},
|
||
number={1},
|
||
pages={56},
|
||
year={2022},
|
||
publisher={Educational Publishing Foundation}
|
||
}
|
||
|
||
@Article{Jason1990,
|
||
Title = {Ecological consequences of individual spatial choice in foraging groups of brown capuchin monkeys, {Cebus apella}},
|
||
Author = {Charles H. Janson},
|
||
Journal = AnimBehav,
|
||
Year = {1990},
|
||
Number = {5},
|
||
Pages = {922 - 934},
|
||
Volume = {40},
|
||
|
||
Abstract = {Individuals in a foraging group of brown capuchin monkeys choose different spatial positions relative to the rest of the group. An individual's choice of spatial positiion affects its foraging success and perceived predation risk (as measured by vigilance behaviour). The two most dominant group members preferred to forage where their expected forwaging success was greatest. Juveniles chose to forage where their perceived predation risk was least, not where they would achieve the highest foraging success. The positions used by non-dominant adults neither maximized foraging success nor minimized predation risk. It is likely that subordinate adults accept spatial positions with suboptimal ecological consequences to avoid the costs of frequent confrontations with the dominant members of the group over foraging sites in poreferred positions.},
|
||
Doi = {https://doi.org/10.1016/S0003-3472(05)80994-7},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21},
|
||
Url = {http://www.sciencedirect.com/science/article/pii/S0003347205809947}
|
||
}
|
||
|
||
@Article{Jazayeri2006,
|
||
Title = {Optimal representation of sensory information by neural populations.},
|
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Author = {Mehrdad Jazayeri and J Anthony Movshon},
|
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Journal = {Nature Neuroscience},
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Pages = {690-696},
|
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|
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}
|
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|
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|
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title={Responses to amplitude-modulated tones in the auditory nerve of the cat},
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author={Joris, Philip X and Yin, Tom CT},
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publisher={Acoustical Society of America}
|
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}
|
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|
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title={Neural processing of amplitude-modulated sounds},
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author={Joris, PX and Schreiner, CE and Rees, A},
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pages={541--577},
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year={2004}
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}
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|
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@article{Juergens1999,
|
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title={{Visual stimulation elicits locked and induced gamma oscillations in monkey intracortical-and {EEG-potentials}, but not in human {EEG}}},
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author={Juergens, Egbert and Guettler, Andreas and Eckhorn, Reinhard},
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year={1999},
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publisher={Springer}
|
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}
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|
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@article{Julicher2001,
|
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title={Physical basis of two-tone interference in hearing},
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author={J{\"u}licher, Frank and Andor, Daniel and Duke, Thomas},
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journal={Proceedings of the National Academy of Sciences},
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volume={98},
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number={16},
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pages={9080--9085},
|
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year={2001},
|
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publisher={National Acad Sciences}
|
||
}
|
||
|
||
@Article{Jun2013,
|
||
Title = {Real-Time Localization of Moving Dipole Sources for Tracking Multiple Free-Swimming Weakly Electric Fish},
|
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Author = {Jun, James Jaeyoon and Longtin, Andr\'e and Maler, Leonard},
|
||
Journal = PLOSOne,
|
||
Year = {2013},
|
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Number = {6},
|
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Pages = {1-14},
|
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Volume = {8},
|
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Doi = {10.1371/journal.pone.0066596},
|
||
Owner = {raab},
|
||
Publisher = {Public Library of Science},
|
||
Timestamp = {2020.02.11},
|
||
Url = {https://doi.org/10.1371/journal.pone.0066596}
|
||
}
|
||
|
||
@ARTICLE{Jun2014,
|
||
AUTHOR = {James J. Jun and Andr\'e Longtin and Leonard Maler},
|
||
TITLE = {Enhanced sensory sampling precedes spef-initiated locomotion in an electric fish.},
|
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JOURNAL = {Journal of Experimental Biology},
|
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YEAR = {2014},
|
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VOLUME = {217},
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PAGES = {3615--3628}
|
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}
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PUBLISHER = {Springer},
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ADDRESS = {Heidelberg}
|
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}
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@book{Kandel2000,
|
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title={Principles of neural science},
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author={Kandel, Eric R and Schwartz, James H and Jessell, Thomas M and Siegelbaum, Steven and Hudspeth, A James and Mack, Sarah and others},
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publisher={McGraw-hill New York}
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}
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Title = {The lemur syndrome unresolved: extreme male reproductive skew in sifakas ({Propithecus verreauxi}), a sexually monomorphic primate with female dominance},
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Author = {Kappeler, Peter M.
|
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and Sch{\"a}ffler, Livia},
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Journal = BehavEcolSociobiol,
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Number = {6},
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Pages = {1007--1015},
|
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Volume = {62},
|
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Day = {01},
|
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Doi = {10.1007/s00265-007-0528-6},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.23},
|
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Url = {https://doi.org/10.1007/s00265-007-0528-6}
|
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}
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title={Spinal cord stimulation for chronic pain syndromes: a review of considerations in practice management},
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author={Karri, Jay and Joshi, Mihir and Polson, George and Tang, Tuan and Maxwell, Lee and Orhurhu, Vwaire and Deer, Timothy and Abd-Elsayed, Alaa},
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journal={Pain Physician},
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volume={23},
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number={6},
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pages={599},
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year={2020},
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publisher={American Society of Interventional Pain Physician}
|
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}
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|
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@article{Kashimori1996,
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title={Model of P-and {T-electroreceptors} of weakly electric fish},
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JOURNAL = BiolCybern,
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YEAR = {2008},
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}
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title={Stimulated acoustic emissions from within the human auditory system},
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Author = {Roland Kern and J. H. van Hateren and Christian Michaelis and Jens Peter Lindemann and Martin Egelhaaf},
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Journal = PLoSBiol,
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}
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@Article{Kerth2003,
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Title = {Information Transfer about Roosts in Female Bechstein's Bats: An Experimental Field Study},
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Author = {Gerald Kerth and Karsten Reckardt},
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Year = {2003},
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Pages = {511-515},
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Volume = {270},
|
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|
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Doi = {10.2307/3558892},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.30}
|
||
}
|
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|
||
@Article{Khanbabaie2010,
|
||
title={Kinetics of fast short-term depression are matched to spike train statistics to reduce noise},
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author={Khanbabaie, Reza and Nesse, William H and Longtin, Andre and Maler, Leonard},
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journal={Journal of Neurophysiology},
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volume={103},
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number={6},
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pages={3337--3348},
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year={2010},
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publisher={American Physiological Society Bethesda, MD}
|
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}
|
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|
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@article{Khanna1989,
|
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title={Spectral characteristics of the responses of primary auditory-nerve fibers to amplitude-modulated signals},
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author={Khanna, SM and Teich, MC},
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year={1989},
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publisher={Elsevier}
|
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}
|
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|
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@Article{Khosravi-Hashemi2014,
|
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|
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Author = {Navid Khosravi-Hashemi and Maurice J. Chacron},
|
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Journal = PhysiolRep,
|
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Year = {2014},
|
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Number = {3},
|
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Pages = {e00253},
|
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Volume = {2}
|
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}
|
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|
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@article{King2019,
|
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title={Accounting for masking of frequency modulation by amplitude modulation with the modulation filter-bank concept},
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author={King, Andrew and Varnet, L{\'e}o and Lorenzi, Christian},
|
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journal={The Journal of the Acoustical Society of America},
|
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volume={145},
|
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number={4},
|
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pages={2277--2293},
|
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year={2019},
|
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publisher={AIP Publishing}
|
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}
|
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|
||
@ARTICLE{Kirschbaum1983,
|
||
AUTHOR = {F. Kirschbaum},
|
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TITLE = {Myogenic electric organ precedes the neurogenic organ in apteronotid fish.},
|
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JOURNAL = {Naturwissenschaften},
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YEAR = {1983},
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VOLUME = {70},
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PAGES = {205--207}
|
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}
|
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|
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@Article{Kirschbaum2002,
|
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Title = {Reproductive strategies and developmental aspects in mormyrid and gymnotiform fishes},
|
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Author = {Frank Kirschbaum and Christian Schugardt},
|
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Journal = {Journal of Physiology-Paris},
|
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Year = {2002},
|
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Number = {5},
|
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Pages = {557 - 566},
|
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Volume = {96},
|
||
Doi = {https://doi.org/10.1016/S0928-4257(03)00011-1},
|
||
Keywords = {Reproductive strategies, Mormyrids, Gymnotiforms, Fecundity, Cyclical reproduction},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11},
|
||
Url = {http://www.sciencedirect.com/science/article/pii/S0928425703000111}
|
||
}
|
||
|
||
@article{Kiskinis2018,
|
||
title={{All-optical electrophysiology for high-throughput functional characterization of a human iPSC-derived motor neuron model of ALS}},
|
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author={Kiskinis, Evangelos and Kralj, Joel M and Zou, Peng and Weinstein, Eli N and Zhang, Hongkang and Tsioras, Konstantinos and Wiskow, Ole and Ortega, J Alberto and Eggan, Kevin and Cohen, Adam E},
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journal={Stem Cell Reports},
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volume={10},
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number={6},
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pages={1991--2004},
|
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year={2018},
|
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publisher={Elsevier}
|
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}
|
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|
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@ARTICLE{Knight1972a,
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AUTHOR = {Bruce W. Knight},
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TITLE = {Dynamics of Encoding in a Population of Neurons.},
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YEAR = {1972},
|
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JOURNAL = {The Journal of General Physiology},
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VOLUME = {59},
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PAGES = {734--766} }
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|
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@article{Knudsen1974,
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author = {Knudsen, EI},
|
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journal = {Journal of Comparative Physiology},
|
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number = {4},
|
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pages = {333--353},
|
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publisher = {Springer},
|
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title = {Behavioral thresholds to electric signals in high
|
||
frequency electric fish},
|
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volume = {91},
|
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year = {1974}
|
||
}
|
||
|
||
@article{Knudsen1975,
|
||
author = {Knudsen, EI},
|
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journal = {Journal of Comparative Physiology},
|
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number = {2},
|
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pages = {103--118},
|
||
publisher = {Springer},
|
||
title = {Spatial aspects of the electric fields generated by
|
||
weakly electric fish},
|
||
volume = {99},
|
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year = {1975}
|
||
}
|
||
|
||
@Article{Knudsen1976a,
|
||
Title = {Midbrain Responses to Electroreceptive Input in Catfish - Evidence of Orientation Preferences and Somatotopic Organization.},
|
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Author = {Eric I. Knudsen},
|
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Journal = JCompPhysiol,
|
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Year = {1976},
|
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Pages = {51-67},
|
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Volume = {106}
|
||
}
|
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|
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@Article{Knudsen1976b,
|
||
Title = {Midbrain Units in Catfish: Response Properties to Electroreceptive Input.},
|
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Author = {Eric I. Knudsen},
|
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Journal = JCompPhysiol,
|
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Year = {1976},
|
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Pages = {315-335},
|
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Volume = {109}
|
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}
|
||
|
||
@Article{Knudsen1978,
|
||
Title = {Funcitonal Organization in Electroreceptive Midbrain of the Catfish.},
|
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Author = {Eric I. Knudsen},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {1978},
|
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Number = {2},
|
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Pages = {350-364},
|
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Volume = {41}
|
||
}
|
||
|
||
@article{Knudsen2007,
|
||
title={Fundamental components of attention},
|
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author={Knudsen, Eric I},
|
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journal={Annual Review of Neuroscience},
|
||
volume={30},
|
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pages={57--78},
|
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year={2007},
|
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publisher={Annual Reviews}
|
||
}
|
||
|
||
@Article{Koelsch2005,
|
||
title={Towards a neural basis of music perception},
|
||
author={Koelsch, Stefan and Siebel, Walter A},
|
||
journal={Trends in Cognitive Sciences},
|
||
volume={9},
|
||
number={12},
|
||
pages={578--584},
|
||
year={2005},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
|
||
|
||
@article{Koenig1876,
|
||
title={{LI. On the simultaneous sounding of two notes}},
|
||
author={K{\"o}nig, Rudolph},
|
||
journal={The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science},
|
||
volume={1},
|
||
number={6},
|
||
pages={417--446},
|
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year={1876},
|
||
publisher={Taylor \& Francis}
|
||
}
|
||
|
||
@article{Koenig1881,
|
||
title={Ueber den Ursprung der St{\"o}sse und Stosst{\"o}ne bei harmonischen Intervallen},
|
||
author={Koenig, Rudolph},
|
||
journal={Annalen der Physik},
|
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volume={248},
|
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number={3},
|
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pages={335--349},
|
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year={1881},
|
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publisher={Wiley Online Library}
|
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}
|
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|
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@Article{Koerding2004,
|
||
Title = {How Are Complex Cell Properties Adapted to the Statistics of Natural Stimuli?},
|
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Author = {Konrad P. K\"ording and Christoph Kayser and Wolfgang Einh\"auser and Peter K\"onig},
|
||
Journal = {Journal of Neurophysiology},
|
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Year = {2004},
|
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Pages = {206-212},
|
||
Volume = {91}
|
||
}
|
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|
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@article{Koch1995,
|
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title={Do neurons have a voltage or a current threshold for action potential initiation?},
|
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author={Koch, Christof and Bernander, {\"O}jvind and Douglas, Rodney J},
|
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journal={Journal of computational neuroscience},
|
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volume={2},
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pages={63--82},
|
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year={1995},
|
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publisher={Springer}
|
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}
|
||
|
||
@ARTICLE{Kolodziejski2005,
|
||
AUTHOR = {Johanna A. Kolodziejski and Brian S. Nelson and G. Troy Smith},
|
||
TITLE = {Sex and species differences in neuromodulatory input to a premotor nucleus: a comparative study of substance {P} and communication behavior in weakly electric fish.},
|
||
JOURNAL = {J Neuro Biol},
|
||
YEAR = {2005},
|
||
VOLUME = {62},
|
||
PAGES = {299--315}
|
||
}
|
||
|
||
@article{Koppl1997,
|
||
title={Phase locking to high frequencies in the auditory nerve and cochlear nucleus magnocellularis of the barn owl, {Tyto alba}},
|
||
author={K{\"o}ppl, Christine},
|
||
journal={Journal of Neuroscience},
|
||
volume={17},
|
||
number={9},
|
||
pages={3312--3321},
|
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year={1997}
|
||
}
|
||
|
||
@Article{Korstjens2006,
|
||
Title = {Time as a constraint on group size in spider monkeys},
|
||
Author = {Korstjens, Amanda H.
|
||
and Verhoeckx, Ingrid Lugo
|
||
and Dunbar, Robin I. M.},
|
||
Journal = BehavEcolSociobiol,
|
||
Year = {2006},
|
||
Number = {5},
|
||
Pages = {683},
|
||
Volume = {60},
|
||
|
||
Abstract = {An animal can only survive in a given habitat if it has enough time to find, process and digest food whilst avoiding predation. The time it has for food acquisition is affected by the vegetation and competition with conspecifics, which depends on aggregation tendencies. We used the relationships between time allocations, on the one hand, and climatic variables (as a proxy for habitat quality) and group size, on the other, to develop a model that predicts maximum ecologically tolerable group size at different locations for spider monkeys. Spider monkeys are particularly interesting because the social communities often split up into small units. Temperature variation and rainfall variation were the rescue_local_eod determinants of time budgets. Community size and average annual rainfall determined party size. The model correctly predicted presence or absence of spider monkeys at 78--83{\%} of 217 New World forest sites. Within the geographical range of the species, this time budget model predicted the presence of spider monkeys better than a model based directly on climate variables. Predicted community and party sizes were significantly larger at sites where spider monkeys are present than at sites where they are absent. As required by the model, predicted maximum community sizes were significantly larger than observed community sizes. Moving time showed a U-shaped relationship with party size, which suggests that moving time is the factor that keeps spider monkey communities from travelling together in a tight group.},
|
||
Day = {20},
|
||
Doi = {10.1007/s00265-006-0212-2},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21},
|
||
Url = {https://doi.org/10.1007/s00265-006-0212-2}
|
||
}
|
||
|
||
@article{Kozmik2008,
|
||
title={Assembly of the cnidarian camera-type eye from vertebrate-like components},
|
||
author={Kozmik, Zbynek and Ruzickova, Jana and Jonasova, Kristyna and Matsumoto, Yoshifumi and Vopalensky, Pavel and Kozmikova, Iryna and Strnad, Hynek and Kawamura, Shoji and Piatigorsky, Joram and Paces, Vaclav and others},
|
||
journal={Proceedings of the National Academy of Sciences},
|
||
volume={105},
|
||
number={26},
|
||
pages={8989--8993},
|
||
year={2008},
|
||
publisher={National Acad Sciences}
|
||
}
|
||
|
||
|
||
|
||
@Article{Krahe2004,
|
||
Title = {Burst firing in sensory systems.},
|
||
Author = {R\"udiger Krahe and Fabrizio Gabbiani},
|
||
Journal = {Nature Reviews Neuroscience},
|
||
Year = {2004},
|
||
Month = {Jan},
|
||
Number = {1},
|
||
Pages = {13--23},
|
||
Volume = {5},
|
||
DOI = {10.1038/nrn1296},
|
||
File = {:Krahe_Gabbiani_{Nature Neuroscience}Rev_.pdf:PDF},
|
||
Institution = {Beckman Institute for Advanced Science and Technology and Department of Molecular and Integrative Physiology, University of Illinois at Urbana/Champaign, 405 North Mathews Avenue, Urbana, Illinois 61801, USA.},
|
||
Keywords = {Action Potentials; Animals; Brain; Humans; Nerve Net; Neurons; Neurons, Afferent},
|
||
Pii = {nrn1296},
|
||
Pmid = {14661065},
|
||
Refid = {731},
|
||
Timestamp = {2011.06.14},
|
||
URL = {http://dx.doi.org/10.1038/nrn1296}
|
||
}
|
||
|
||
@Article{Krahe2008,
|
||
title={Temporal processing across multiple topographic maps in the electrosensory system},
|
||
author={Krahe, Rudiger and Bastian, Joseph and Chacron, Maurice J},
|
||
journal={Journal of Neurophysiology},
|
||
volume={100},
|
||
number={2},
|
||
pages={852--867},
|
||
year={2008},
|
||
publisher={American Physiological Society}
|
||
}
|
||
|
||
@Article{Krahe2014,
|
||
Title = {Neural maps in the electrosensory system of weakly elcectric fish.},
|
||
Author = {R\"udiger Krahe and Leonard Maler},
|
||
Journal = {Current Opinion in Neurobiology},
|
||
Year = {2014},
|
||
Pages = {13-21},
|
||
Volume = {24}
|
||
}
|
||
|
||
|
||
|
||
@incollection{Kramer1981,
|
||
title = {Species specificity of electric organ discharges in a sympatric group of gymnotoid fish from {Manaus} ({Amazonas}).},
|
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editor = {T. Szabó and G. Czéh},
|
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booktitle = {Sensory physiology of aquatic lower vertebrates},
|
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publisher = {Pergamon},
|
||
pages = {195-219},
|
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year = {1981},
|
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isbn = {978-0-08-027352-5},
|
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doi = {https://doi.org/10.1016/B978-0-08-027352-5.50018-5},
|
||
url = {https://www.sciencedirect.com/science/article/pii/B9780080273525500185},
|
||
author = {Bernd Kramer and Frank Kirschbaum and Hubert Markl},
|
||
abstract = {SUMMARY
|
||
We collected weakly electric gymnotoid fish in the vicinity of Manaus, Amazonas, in the Solimoes river (white water). We tried to find out whether Electric Organ Discharges (EODs) are species specific which is essential for their presumed role in recognition of conspecifics and reproductive isolation. We considered at least 43 valid sympatric species, some of them unnamed. All of these displayed stable EOD waveform patterns, most of them clearly distinct from the other species' EODs. Eleven species are of the pulse EOD type, 32 of the wave EOD type (one of the latter is intermediate). The EODs of pulse species were analysed (1) by EOD repetition rate at rest (variation from 1 Hz to 60 Hz), (2) by Fourier amplitude spectrum analysis of single EODs (Fig. 1; in these spectra, frequencies of peak amplitude ranged up to 2300 Hz). There was a significant, positive correlation between both parameters (Fig. 2). Identification of pairs of species with similar EODs by these parameters does not appear to be possible because of inter-individual EOD variations. In wave species there is conclusive evidence that EOD fundamental frequencies (= repetition rate of a complete EOD period) do not allow species identification: twenty-eight wave species displayed EOD fundamental frequencies from 300 to 1800 Hz (Fig. 3). This yields a hypothetical frequency band of 0.09 octave to signal species identity; the actual value of EOD frequency variations in Eigenmannia is much greater (1.2 octaves). Seven species of the family Apteronotidae displayed a new signal type: the main energy of the signal was contained in higher harmonics, and not at the fundamental frequencies (Figs. 6 and 7). For all wave species there was a significant, positive correlation between their dominant frequency (= the strongest signal component) and harmonic content of their EOD although individual species deviated considerably from what was predicted by the regression line (Fig. 8). Thus separation of species was greatly improved compared to the criterion of fundamental frequency (Fig. 3) but still appeared insufficient in a number of cases. Therefore, in both wave and pulse species still other parameters must be involved in recognition of conspecifics.}
|
||
}
|
||
|
||
@ARTICLE{Kramer1988,
|
||
AUTHOR = {Bernd Kramer and B. Otto},
|
||
TITLE = {Female discharges are more electrifying: spontaneous preference in the electric fish, \textit{Eigenmannia} ({Gymnotiformes}, {Teleostei}).},
|
||
JOURNAL = BehavEcolSociobiol,
|
||
YEAR = {1988},
|
||
VOLUME = {23},
|
||
PAGES = {55--60}
|
||
}
|
||
|
||
@ARTICLE{Kramer1999,
|
||
AUTHOR = {Bernd Kramer},
|
||
TITLE = {Waveform discrimination, phase sensitivity and jamming avoidance in a wave-type electric fish.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1999},
|
||
VOLUME = {202},
|
||
PAGES = {1387--1398}
|
||
}
|
||
|
||
@article{Krishna2000,
|
||
title={Auditory temporal processing: responses to sinusoidally amplitude-modulated tones in the inferior colliculus},
|
||
author={Krishna, B Suresh and Semple, Malcolm N},
|
||
journal={Journal of Neurophysiology},
|
||
volume={84},
|
||
number={1},
|
||
pages={255--273},
|
||
year={2000}
|
||
}
|
||
|
||
@article{Kubo1957,
|
||
title={Statistical-mechanical theory of irreversible processes. {I}. General theory and simple applications to magnetic and conduction problems},
|
||
author={Kubo, Ryogo},
|
||
journal={Journal of the physical society of Japan},
|
||
volume={12},
|
||
number={6},
|
||
pages={570--586},
|
||
year={1957},
|
||
publisher={The Physical Society of Japan}
|
||
}
|
||
|
||
@article{Kujawa1995,
|
||
title={{Time-varying alterations in the {f2- f1 DPOAE} response to continuous primary stimulation {I}: Response characterization and contribution of the olivocochlear efferents}},
|
||
author={Kujawa, SG and Fallon, M and Bobbin, RP},
|
||
journal={Hearing Research},
|
||
volume={85},
|
||
number={1-2},
|
||
pages={142--154},
|
||
year={1995},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@inproceedings{Kunkel2010,
|
||
title={A reassessment of the simultaneous dynamic range of the human visual system},
|
||
author={Kunkel, Timo and Reinhard, Erik},
|
||
booktitle={Proceedings of the 7th symposium on applied perception in graphics and visualization},
|
||
pages={17--24},
|
||
year={2010}
|
||
}
|
||
|
||
@article{Lamore1986,
|
||
title={Envelope detection of amplitude-modulated high-frequency sinusoidal signals by skin mechanoreceptors},
|
||
author={Lamore, PJJ and Muijser, H and Keemink, CJ},
|
||
journal={The Journal of the Acoustical Society of America},
|
||
volume={79},
|
||
number={4},
|
||
pages={1082--1085},
|
||
year={1986},
|
||
publisher={Acoustical Society of America}
|
||
}
|
||
|
||
@Article{Land1977,
|
||
title={The retinex theory of color vision},
|
||
author={Land, Edwin H},
|
||
journal={Scientific american},
|
||
volume={237},
|
||
number={6},
|
||
pages={108--129},
|
||
year={1977},
|
||
publisher={JSTOR}
|
||
}
|
||
|
||
@article{Langley1996,
|
||
title={Linear filtering precedes nonlinear processing in early vision},
|
||
author={Langley, K and Fleet, DJ and Hibbard, PB},
|
||
journal={Current Biology},
|
||
volume={6},
|
||
number={7},
|
||
pages={891--896},
|
||
year={1996},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@Article{Larson2014,
|
||
Title = {Serotonin modulates electrosensory processing and behavior via {5-HT2-like} receptors.},
|
||
Author = {E.A. Larson and M.G. Metzen and M.J. Chacron},
|
||
Journal = Neuroscience,
|
||
Year = {2014},
|
||
Volume = {in press}
|
||
}
|
||
|
||
@Article{Laughlin1981,
|
||
Title = {A simple coding procedure enhances a neuron's information capacity.},
|
||
Author = {S. B. Laughlin},
|
||
Journal = {Zeitschrift für Naturforschung},
|
||
Year = {1981},
|
||
Pages = {910--912},
|
||
Volume = {36C}
|
||
}
|
||
|
||
@Article{Lavoue2000,
|
||
Title = {Phylogenetic Relationships of Mormyrid Electric Fishes ({Mormyridae; Teleostei}) Inferred from Cytochrome b Sequences},
|
||
Author = {S\'ebastien Lavou\'e and R\'emy Bigorne and Guillaume Lecointre and Jean-Fran{\c c}ois Agn\`ese},
|
||
Journal = {Molecular Phylogenetics and Evolution},
|
||
Year = {2000},
|
||
Number = {1},
|
||
Pages = {1 - 10},
|
||
Volume = {14},
|
||
Doi = {https://doi.org/10.1006/mpev.1999.0687},
|
||
Keywords = {Mormyridae, electric fish, phylogeny, cytochrome , electric organ.},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11},
|
||
Url = {http://www.sciencedirect.com/science/article/pii/S1055790399906875}
|
||
}
|
||
|
||
@article{Lavoue2012,
|
||
title={Comparable ages for the independent origins of electrogenesis in {African and South American} weakly electric fishes},
|
||
author={Lavou{\'e}, S{\'e}bastien and Miya, Masaki and Arnegard, Matthew E and Sullivan, John P and Hopkins, Carl D and Nishida, Mutsumi},
|
||
journal={PLoS One},
|
||
volume={7},
|
||
number={5},
|
||
pages={e36287},
|
||
year={2012},
|
||
publisher={Public Library of Science San Francisco, USA}
|
||
}
|
||
|
||
@Article{Lee2003,
|
||
Title = {Hierarchical {Bayesian} inference in the visual cortex.},
|
||
Author = {Tai Sing Lee and David Mumford},
|
||
Journal = JOSA,
|
||
Year = {2003},
|
||
Number = {7},
|
||
Pages = {1434-1448},
|
||
Volume = {20}
|
||
}
|
||
|
||
@article{Leek2001,
|
||
title={Adaptive procedures in psychophysical research},
|
||
author={Leek, Marjorie R},
|
||
journal={Perception \rm{\&} \textit{Psychophysics}},
|
||
volume={63},
|
||
number={8},
|
||
pages={1279--1292},
|
||
year={2001},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@Article{Lewicki2002,
|
||
Title = {Efficient coding of natural sounds.},
|
||
Author = {Michael S. Lewicki},
|
||
Journal = {Nature Neuroscience},
|
||
Year = {2002},
|
||
Number = {4},
|
||
Pages = {356-363},
|
||
Volume = {5}
|
||
}
|
||
|
||
@Article{Lewicki2014,
|
||
Title = {Scene analysis in the natural environment.},
|
||
Author = {Michael S. Lewicki and Bruno A. Olshausen and Annemarie Surlykke and Cynthia F. Moss},
|
||
Journal = FrontPsychol,
|
||
Year = {2014},
|
||
Pages = {1--21},
|
||
Volume = {5}
|
||
}
|
||
|
||
@Article{Liberman1982,
|
||
title={Single-neuron labeling in the cat auditory nerve},
|
||
author={Liberman, MC},
|
||
journal={Science},
|
||
volume={216},
|
||
number={4551},
|
||
pages={1239--1241},
|
||
year={1982},
|
||
publisher={American Association for the Advancement of Science}
|
||
}
|
||
|
||
|
||
@Article{Lindner2022,
|
||
title={Fluctuation-dissipation relations for spiking neurons},
|
||
author={Lindner, Benjamin},
|
||
journal={Physical Review Letters},
|
||
volume={129},
|
||
number={19},
|
||
pages={198101},
|
||
year={2022},
|
||
publisher={APS}
|
||
}
|
||
|
||
|
||
|
||
|
||
@article{Lisman1997,
|
||
title={Bursts as a unit of neural information: making unreliable synapses reliable},
|
||
author={Lisman, John E},
|
||
journal={Trends in Neurosciences},
|
||
volume={20},
|
||
number={1},
|
||
pages={38--43},
|
||
year={1997},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@ARTICLE{Lissmann1951,
|
||
AUTHOR = {H. W. Lissmann},
|
||
TITLE = {Continous electrical signals from the tail of a fish, \textit{Gymnarchus niloticus} Cuv.},
|
||
YEAR = {1951},
|
||
JOURNAL = Nature,
|
||
VOLUME = {167},
|
||
PAGES = {201--202} }
|
||
|
||
@ARTICLE{Lissmann1958Function,
|
||
AUTHOR = {H. W. Lissmann},
|
||
TITLE = {On the function and evolution of electric organs in fish.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1958},
|
||
VOLUME = {35},
|
||
PAGES = {156--191}
|
||
}
|
||
|
||
@ARTICLE{Lissmann1958Mechanism,
|
||
AUTHOR = {H. W. Lissmann and K. E. Machin},
|
||
TITLE = {The mechanism of object location in \textit{Gymnarchus niloticus} and similar fish.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {1958},
|
||
VOLUME = {35},
|
||
PAGES = {451--486}
|
||
}
|
||
|
||
@ARTICLE{Lissmann1965,
|
||
AUTHOR = {Hans W. Lissmann and Hosrt O. Schwassmann},
|
||
TITLE = {Activity rhythm of an electric fish, \textit{Gymnorhamphichtys hypostomus}, Ellis.},
|
||
JOURNAL = {Z vergl Physiol},
|
||
YEAR = {1965},
|
||
VOLUME = {51},
|
||
PAGES = {153--171}
|
||
}
|
||
|
||
@Article{Litwin-Kumar2012,
|
||
Title = {The Spatial Structure of Stimuli Shapes the Timescale of Correlations in Population Spiking Activity.},
|
||
Author = {Ashok Litwin-Kumar and Maurice J. Chacron and Brent Doiron},
|
||
Journal = {PLoS Computational Biology},
|
||
Year = {2012},
|
||
Number = {9},
|
||
Pages = {e1002667},
|
||
Volume = {8}
|
||
}
|
||
|
||
@Article{Lochmann2011,
|
||
Title = {Neural processing as causal inference.},
|
||
Author = {Timm Lochmann and Sophie Deneve},
|
||
Journal = CurrOpinNeurobiol,
|
||
Year = {2011},
|
||
Pages = {774-781},
|
||
Volume = {21}
|
||
}
|
||
|
||
@article{Longtin1993,
|
||
title={Stochastic resonance in neuron models},
|
||
author={Longtin, Andr{\'e}},
|
||
journal={Journal of statistical physics},
|
||
volume={70},
|
||
pages={309--327},
|
||
year={1993},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@Article{Longtin1996,
|
||
title={Encoding with bursting, subthreshold oscillations, and noise in mammalian cold receptors},
|
||
author={Longtin, Andre and Hinzer, Karin},
|
||
journal={Neural Computation},
|
||
volume={8},
|
||
number={2},
|
||
pages={215--255},
|
||
year={1996},
|
||
publisher={MIT Press}
|
||
}
|
||
|
||
@article{Longtin2008,
|
||
title={Neural dynamics of envelope coding},
|
||
author={Longtin, Andr{\'e} and Middleton, Jason W and Cieniak, Jakub and Maler, Leonard},
|
||
journal={Mathematical Biosciences},
|
||
volume={214},
|
||
number={1-2},
|
||
pages={87--99},
|
||
year={2008},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@article{Lonsbury1990,
|
||
title={The clinical utility of distortion-product otoacoustic emissions.},
|
||
author={Lonsbury-Martin, Brenda L and Martin, Glen K},
|
||
journal={Ear Hearing},
|
||
volume={11},
|
||
number={2},
|
||
pages={144--154},
|
||
year={1990}
|
||
}
|
||
|
||
@ARTICLE{Machnik2008,
|
||
AUTHOR = {Peter Machnik and Bernd Kramer},
|
||
TITLE = {Female choice by electric pulse duration: attractiveness of the males' communication signal assessed by female bulldog fish, \textit{Marcusenius pongolensis} {(Mormyridae, Teleostei)}.},
|
||
JOURNAL = {Journal of Experimental Biology},
|
||
YEAR = {2008},
|
||
VOLUME = {211},
|
||
PAGES = {1969--1977}
|
||
}
|
||
|
||
@ARTICLE{MacIver2010,
|
||
AUTHOR = {Malcolm A. MacIver and Neelesh A. Patankar and Anup A. Shirgaonkar},
|
||
TITLE = {Energy-information trade-offs between movement and sensing.},
|
||
JOURNAL = {PLoS Computational Biology},
|
||
YEAR = {2010},
|
||
VOLUME = {6},
|
||
PAGES = {e1000769}
|
||
}
|
||
|
||
@Article{Madhav2018,
|
||
Title = {High-resolution behavioral mapping of electric fishes in Amazonian habitats},
|
||
Author = {Manu S. Madhav and Ravikrishnan P. Jayakumar and Alican Demir and Sarah A. Stamper and Eric S. Fortune and Noah J. Cowan},
|
||
Journal = {Scientific Reports},
|
||
Year = {2018},
|
||
Number = {5830},
|
||
Volume = {8},
|
||
|
||
Doi = {https://doi.org/10.1038/s41598-018-24035-5},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
@article{Maier2008,
|
||
title={Integration of bimodal looming signals through neuronal coherence in the temporal lobe},
|
||
author={Maier, Joost X and Chandrasekaran, Chandramouli and Ghazanfar, Asif A},
|
||
journal={Current Biology},
|
||
volume={18},
|
||
number={13},
|
||
pages={963--968},
|
||
year={2008},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
|
||
@Article{Maler1974,
|
||
Title = {Differential projections of Ordinary Lateral Line Receptors and Electroreceptors in the Gymnotic Fish, {\textit{Apteronotus (Sternarchus) albifrons}}.},
|
||
Author = {L. Maler and T. Finger and H.J. Karten},
|
||
Journal = {Journal of Comparative Neurology},
|
||
Year = {1974},
|
||
Pages = {363-382},
|
||
Volume = {158}
|
||
}
|
||
|
||
@Article{Maler1979,
|
||
Title = {The Posterior Lateral Line Lobe of Certain Gymnotoid Fish: Quantitative Light Microscopy.},
|
||
Author = {Leonard Maler},
|
||
Journal = {Journal of Comparative Neurology},
|
||
Year = {1979},
|
||
Pages = {323-364},
|
||
Volume = {183}
|
||
}
|
||
|
||
@ARTICLE{Maler2009a,
|
||
AUTHOR = {Leonard Maler},
|
||
TITLE = {Receptive field organization across multiple electrosensory maps. {I}. Columnar organization and estimation of receptive field size.},
|
||
YEAR = {2009},
|
||
JOURNAL = {Journal of Comparative Neurology},
|
||
VOLUME = {516},
|
||
PAGES = {376--393} }
|
||
|
||
@article{Malone2010,
|
||
title={Temporal codes for amplitude contrast in auditory cortex},
|
||
author={Malone, Brian J and Scott, Brian H and Semple, Malcolm N},
|
||
journal={Journal of Neuroscience},
|
||
volume={30},
|
||
number={2},
|
||
pages={767--784},
|
||
year={2010},
|
||
publisher={Soc Neuroscience}
|
||
}
|
||
|
||
|
||
@Article{Manley1990,
|
||
title={Peripheral auditory processing in the bobtail lizard {Tiliqua rugosa}: {I}. Frequency tuning of auditory-nerve fibres},
|
||
author={Manley, Geoffrey A and K{\"o}ppl, Christine and Johnstone, Brian M},
|
||
journal={Journal of Comparative Physiology A},
|
||
volume={167},
|
||
pages={89--99},
|
||
year={1990},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@article{Margolskee2002,
|
||
title={Molecular mechanisms of bitter and sweet taste transduction},
|
||
author={Margolskee, Robert F},
|
||
journal={Journal of Biological Chemistry},
|
||
volume={277},
|
||
number={1},
|
||
pages={1--4},
|
||
year={2002},
|
||
publisher={ASBMB}
|
||
}
|
||
|
||
@Article{Markham2015,
|
||
Title = {Optimal group size in a highly social mammal},
|
||
Author = {Markham, A. Catherine and Gesquiere, Laurence R. and Alberts, Susan C. and Altmann, Jeanne},
|
||
Journal = {{Proceedings of the National Academy of Sciences}},
|
||
Year = {2015},
|
||
Number = {48},
|
||
Pages = {14882--14887},
|
||
Volume = {112},
|
||
|
||
Abstract = {What are the costs and benefits for animals living in groups of different sizes? Balancing the trade-offs between within-group competition (which favors smaller groups) and between-group competition (which favors larger groups) suggests that intermediate-sized groups may be best, yet empirical support for this prediction has largely been lacking. Using long-term data on wild baboons, we provide novel evidence that individuals living in intermediate-sized groups have energetically optimal space-use strategies and lower glucocorticoid (stress hormone) concentrations than individuals in either large or small groups. Our results offer new insight into the costs and benefits of group living.Group size is an important trait of social animals, affecting how individuals allocate time and use space, and influencing both an individual{\textquoteright}s fitness and the collective, cooperative behaviors of the group as a whole. Here we tested predictions motivated by the ecological constraints model of group size, examining the effects of group size on ranging patterns and adult female glucocorticoid (stress hormone) concentrations in five social groups of wild baboons (Papio cynocephalus) over an 11-y period. Strikingly, we found evidence that intermediate-sized groups have energetically optimal space-use strategies; both large and small groups experience ranging disadvantages, in contrast to the commonly reported positive linear relationship between group size and home range area and daily travel distance, which depict a disadvantage only in large groups. Specifically, we observed a U-shaped relationship between group size and home range area, average daily distance traveled, evenness of space use within the home range, and glucocorticoid concentrations. We propose that a likely explanation for these U-shaped patterns is that large, socially dominant groups are constrained by within-group competition, whereas small, socially subordinate groups are constrained by between-group competition and predation pressures. Overall, our results provide testable hypotheses for evaluating group-size constraints in other group-living species, in which the costs of intra- and intergroup competition vary as a function of group size.},
|
||
Doi = {10.1073/{Proceedings of the National Academy of Sciences}.1517794112},
|
||
Owner = {raab},
|
||
Publisher = {National Academy of Sciences},
|
||
Timestamp = {2020.01.21},
|
||
Url = {https://www.{Proceedings of the National Academy of Sciences}.org/content/112/48/14882}
|
||
}
|
||
|
||
@Article{Markham2016,
|
||
Title = {Energetics of Sensing and Communication in Electric Fish: A Blessing and a Curse in the {Anthropocene}?},
|
||
Author = {Michael R. Markham and Yue Ban and Austin G. McCauley and Rosalie Maltby},
|
||
Journal = IntegrCompBiol,
|
||
Year = {2016},
|
||
Number = {5},
|
||
Pages = {889-900},
|
||
Volume = {56}
|
||
}
|
||
|
||
@Article{Markham2017,
|
||
Title = {Costs and benefits of group living in primates: an energetic perspective},
|
||
Author = {A. Catherine Markham and Laurence R. Gesquiere},
|
||
Journal = PhilTransRSocLondBBiolSci,
|
||
Year = {2017},
|
||
Volume = {372},
|
||
|
||
Doi = {http://doi.org/10.1098/rstb.2016.0239},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21}
|
||
}
|
||
|
||
@Article{Marquez2013a,
|
||
Title = {Distribution of Muscarinic Acetylcholine Receptor {mRNA} in the Brain of the Weakly Electric Fish \textit{Apteronotus leptorhynchus}.},
|
||
Author = {Brenda Toscano-M\'arquez and Robert J. Dunn and R\"udiger Krahe},
|
||
Journal = {Journal of Comparative Neurology},
|
||
Year = {2013},
|
||
Pages = {1054-1072},
|
||
Volume = {521}
|
||
}
|
||
|
||
@Article{Marquez2013b,
|
||
Title = {Neuromodulation of early electrosensory processing in gymnotiform weakly electric fish.},
|
||
Author = {Brenda Toscano-M\'arquez and R\"udiger Krahe and Maurice J. Chacron},
|
||
Journal = {Journal of Experimental Biology},
|
||
Year = {2013},
|
||
Pages = {2442-2450},
|
||
Volume = {216}
|
||
}
|
||
|
||
@ARTICLE{Marrero1991,
|
||
AUTHOR = {C. Marrero and D. C. Taphorn},
|
||
TITLE = {Notas sobre la historia natural y la distribuicion de los peces {Gymnotiformes} em la cuenca del {Rio Apure} y otros rios de la {Orinoquia}.},
|
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JOURNAL = {Biollania},
|
||
YEAR = {1991},
|
||
VOLUME = {8},
|
||
PAGES = {123--142}
|
||
}
|
||
|
||
|
||
|
||
@Article{Marsat2010burst,
|
||
title={The structure and size of sensory bursts encode stimulus information but only size affects behavior},
|
||
author={Marsat, Gary and Pollack, Gerald S},
|
||
journal={Journal of Comparative Physiology A},
|
||
volume={196},
|
||
pages={315--320},
|
||
year={2010},
|
||
publisher={Springer}
|
||
}
|
||
|
||
@Article{Marsat2012a,
|
||
Title = {Cellular and circuit properties supporting different sensory coding strategies in electric fish and other systems.},
|
||
Author = {Gary Marsat and Andr\'e Longtin and Leonard Maler},
|
||
Journal = CurrOpinNeurobiol,
|
||
Year = {2012},
|
||
Pages = {1-7},
|
||
Volume = {22}
|
||
}
|
||
|
||
@Article{Marsat2012b,
|
||
Title = {Preparing for the unpredictable: adaptive feedback enhances the response to unexpected communication signals.},
|
||
Author = {Gary Marsat and Leonard Maler},
|
||
Journal = {Journal of Neurophysiology},
|
||
Year = {2012},
|
||
Pages = {1241-1246},
|
||
Volume = {107}
|
||
}
|
||
|
||
@article{Marsat2012bursting,
|
||
title={Bursting neurons and ultrasound avoidance in crickets},
|
||
author={Marsat, Gary and Pollack, Gerald S},
|
||
journal={Frontiers in Neuroscience},
|
||
volume={6},
|
||
pages={95},
|
||
year={2012},
|
||
publisher={Frontiers Research Foundation}
|
||
}
|
||
|
||
|
||
@Article{Mathis2018,
|
||
Title = {{DeepLabCut}: markerless pose estimation of user-defined body parts with deep learning},
|
||
Author = {Alexander Mathis and Pranav Mamidanna and Kevin M. Cury and Taiga Abe and Venkatesh N. Murthy and Mackenzie Weygandt Mathis and Matthias Bethge},
|
||
Journal = {Nature Neuroscience},
|
||
Year = {2018},
|
||
Pages = {1281-1289},
|
||
Volume = {21},
|
||
|
||
Doi = {https://doi.org/10.1038/s41593-018-0209-y},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11}
|
||
}
|
||
|
||
|
||
@ARTICLE{Matias2015,
|
||
AUTHOR = {Paulo Matias and Jan Frans Willem Slaets and Reynaldo Daniel Pinto},
|
||
TITLE = {Individual discrimination of freely swimming pulse-type electric fish from electrode array recordings.},
|
||
JOURNAL = {Neurocomputing},
|
||
YEAR = {2015},
|
||
VOLUME = {153},
|
||
PAGES = {191--198}
|
||
}
|
||
|
||
@Article{McAdams1999,
|
||
Title = {Effects of attention on orientation-tuning functions of
|
||
single neurons in macaque cortical area {V4}.},
|
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Author = {C. J. McAdams and J. H. Maunsell},
|
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Journal = JNeurosci,
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Year = {1999},
|
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Pages = {431--441},
|
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Volume = {19}
|
||
}
|
||
|
||
@ARTICLE{McAnelly2000,
|
||
AUTHOR = {M. Lynne McAnelly and Harold H. Zakon},
|
||
TITLE = {Coregulation of voltage-dependent kinetics of {Na$^+$} and {K$^+$} currents in electric organ.},
|
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JOURNAL = JNeurosci,
|
||
YEAR = {2000},
|
||
VOLUME = {20},
|
||
PAGES = {3408--3414}
|
||
}
|
||
|
||
@Article{McCreery1977,
|
||
Title = {Two Types of Electroreceptive Lateral Lemniscal Neurons of the Lateral Line Lobe of the Catfish {Ictalurus nebulosus}; Connections from the Lateral Line Nerve and Steady-State Frequency Response Characteristics.},
|
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Author = {Douglas B. McCreery},
|
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Journal = JCompPhysiol,
|
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Year = {1977},
|
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Pages = {317-339},
|
||
Volume = {113}
|
||
}
|
||
|
||
@article{Mcdermott2009,
|
||
title={The cocktail party problem},
|
||
author={McDermott, Josh H},
|
||
journal={Current Biology},
|
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volume={19},
|
||
number={22},
|
||
pages={R1024--R1027},
|
||
year={2009},
|
||
publisher={Elsevier}
|
||
}
|
||
|
||
@Article{McGillivray2012,
|
||
Title = {Parallel Coding of First- and Second-Order Stimulus Attributes by Midbrain Electrosensory Neurons.},
|
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Author = {Patrick McGillivray and Katrin Vonderschen and Eric S. Fortune and Maurice J. Chacron},
|
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Journal = JNeurosci,
|
||
Year = {2012},
|
||
Number = {16},
|
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Pages = {5510-5524},
|
||
Volume = {32}
|
||
}
|
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|
||
@ARTICLE{McGregor1992,
|
||
AUTHOR = {Peter K. McGregor and G. W. Max Westby},
|
||
TITLE = {Discrimination of individually charactersitic electric organ discharges by a weakly electric fish.},
|
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|
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YEAR = {1992},
|
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|
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PAGES = {977--986}
|
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}
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@ARTICLE{McKibben1993,
|
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AUTHOR = {J. R. McKibben and C. D. Hopkins and D. D. Yager},
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|
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|
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|
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|
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PAGES = {415--424}
|
||
}
|
||
|
||
@inproceedings{Mckinney2010,
|
||
title={Data structures for statistical computing in python},
|
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author={McKinney, Wes and others},
|
||
booktitle={Proceedings of the 9th Python in Science Conference},
|
||
volume={445},
|
||
pages={51--56},
|
||
year={2010},
|
||
organization={Austin, TX}
|
||
}
|
||
|
||
@Article{Mejias2013,
|
||
Title = {Learning Contrast-Invariant Cancellation of Redundant Signals in Neural Systems.},
|
||
Author = {Jorge F. Mejias and Gary Marsat and Kieran Bol and Leonard Maler and Andr\'e Longtin},
|
||
Journal = {PLoS Computational Biology},
|
||
Year = {2013},
|
||
Number = {9},
|
||
Pages = {e1003180},
|
||
Volume = {9}
|
||
}
|
||
|
||
@Article{Menzel2005,
|
||
Title = {Honey bees navigate according to a map-like spatial memory},
|
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Author = {Menzel, Randolf and Greggers, Uwe and Smith, Alan and Berger, Sandra and Brandt, Robert and Brunke, Sascha and Bundrock, Gesine and H{\"u}lse, Sandra and Pl{\"u}mpe, Tobias and Schaupp, Frank and Sch{\"u}ttler, Elke and Stach, Silke and Stindt, Jan and Stollhoff, Nicola and Watzl, Sebastian},
|
||
Journal = {{Proceedings of the National Academy of Sciences}},
|
||
Year = {2005},
|
||
Number = {8},
|
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Pages = {3040--3045},
|
||
Volume = {102},
|
||
|
||
Abstract = {By using harmonic radar, we report the complete flight paths of displaced bees. Test bees forage at a feeder or are recruited by a waggle dance indicating the feeder. The flights are recorded after the bees are captured when leaving the hive or the feeder and are released at an unexpected release site. A sequence of behavioral routines become apparent: (i) initial straight flights in which they fly the course that they were on when captured (foraging bees) or that they learned during dance communication (recruited bees); (ii) slow search flights with frequent changes of direction in which they attempt to {\textquotedblleft}get their bearings{\textquotedblright}; and (iii) straight and rapid flights directed either to the hive or first to the feeding station and then to the hive. These straight homing flights start at locations all around the hive and at distances far out of the visual catchment area around the hive or the feeding station. Two essential criteria of a map-like spatial memory are met by these results: bees can set course at any arbitrary location in their familiar area, and they can choose between at least two goals. This finding suggests a rich, map-like organization of spatial memory in navigating honey bees.},
|
||
Doi = {10.1073/{Proceedings of the National Academy of Sciences}.0408550102},
|
||
Owner = {raab},
|
||
Publisher = {National Academy of Sciences},
|
||
Timestamp = {2020.02.11},
|
||
Url = {https://www.{Proceedings of the National Academy of Sciences}.org/content/102/8/3040}
|
||
}
|
||
|
||
@Article{Meredith2002,
|
||
title={On the neuronal basis for multisensory convergence: a brief overview},
|
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author={Meredith, M Alex},
|
||
journal={Cognitive brain research},
|
||
volume={14},
|
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number={1},
|
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pages={31--40},
|
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year={2002},
|
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publisher={Elsevier}
|
||
}
|
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|
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@Article{Merkel1965,
|
||
title={Magnetismus und {R}ichtungsfinden zugunruhiger {R}otkehlchen ({E}rithacus rubecula)},
|
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author={Merkel, FW and Wiltschko, W},
|
||
journal={Vogelwarte},
|
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volume={23},
|
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number={1},
|
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pages={71--77},
|
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year={1965}
|
||
}
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|
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@Article{Metcalfe1995,
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Title = {Fish recognize and prefer to shoal with poor competitors},
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Author = {Metcalfe, Neil B. and Thomson, Bruce C.},
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Year = {1995},
|
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Number = {1355},
|
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Pages = {207-210},
|
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Volume = {259},
|
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|
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Doi = {10.1098/rspb.1995.0030},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.27}
|
||
}
|
||
|
||
@Article{Metzen2016,
|
||
title={Burst firing in the electrosensory system of gymnotiform weakly electric fish: mechanisms and functional roles},
|
||
author={Metzen, Michael G and Krahe, R{\"u}diger and Chacron, Maurice J},
|
||
journal={Frontiers in Computational Neuroscience},
|
||
volume={10},
|
||
pages={81},
|
||
year={2016},
|
||
publisher={Frontiers Media SA}
|
||
}
|
||
|
||
@ARTICLE{Metzen2017,
|
||
AUTHOR = {M. G. Metzen and Maurice J. Chacron},
|
||
TITLE = {Stimulus background influences phase invariant coding by correlated neural activity.},
|
||
YEAR = {2017},
|
||
JOURNAL = {eLife},
|
||
VOLUME = {6},
|
||
PAGES = {e24482} }
|
||
|
||
@article{Metzen2018descending,
|
||
title={Descending pathways generate perception of and neural responses to weak sensory input},
|
||
author={Metzen, Michael G and Huang, Chengjie G and Chacron, Maurice J},
|
||
journal={PLoS Biology},
|
||
volume={16},
|
||
number={6},
|
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pages={e2005239},
|
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year={2018},
|
||
publisher={Public Library of Science San Francisco, CA USA}
|
||
}
|
||
|
||
@Article{Meyer1982,
|
||
Title = {Androgens alter the tuning of electroreceptors.},
|
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Author = {Meyer, J H and Zakon, H H},
|
||
Journal = {Science},
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Year = {1982},
|
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Pages = {635--637},
|
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Volume = {217}
|
||
}
|
||
|
||
@ARTICLE{Meyer1982Impedances,
|
||
AUTHOR = {J. Harlan Meyer},
|
||
TITLE = {Behavioral responses of weakly electric fish to complex impedances.},
|
||
JOURNAL = {JCompPhysiol},
|
||
YEAR = {1982},
|
||
VOLUME = {145},
|
||
PAGES = {459--470}
|
||
}
|
||
|
||
@Article{Meyer1987,
|
||
Title = {Hormone-induced and maturational changes in electric organ discharges and electroreceptor tuning in the weakly electric fishApteronotus},
|
||
Author = {Meyer, J. Harlan
|
||
and Leong, Margaret
|
||
and Keller, Clifford H.},
|
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Journal = {JCompPhysiolA},
|
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Year = {1987},
|
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Number = {3},
|
||
Pages = {385--394},
|
||
Volume = {160},
|
||
|
||
Abstract = {Plasticity in the frequency of the electric organ discharge (EOD) and electroreceptor tuning of weakly electric fish was studied in the genusApteronotus. Both hormone-induced and maturational changes in EOD frequency and electroreceptor tuning were examined.Apteronotus is different from all other steroid-responsive weakly electric fish in that estradiol-17$\beta$, rather than androgens, induces discharge frequency decreases. This result can account for the `reversed' discharge frequency dimorphism found inApteronotus in which, counter to all other known sexually dimorphic electric fish, females have lower discharge frequencies than males. Studies of electroreceptor tuning inApteronotus indicate that electroreceptors are closely tuned to the frequency of the EOD. This finding was noted not only in adult animals, but also in juvenile animals shortly after the onset of their EODs. Tuning plasticity inApteronotus, as in other species studied, is associated with altered EOD frequencies and was noted in both maturational EOD changes and in estrogen-induced changes. Thus, tuning plasticity appears to be a general phenomenon which occurs concurrent with a variety of EOD changes.},
|
||
Day = {01},
|
||
Doi = {10.1007/BF00613028},
|
||
Owner = {raab},
|
||
Timestamp = {2020.02.11},
|
||
Url = {https://doi.org/10.1007/BF00613028}
|
||
}
|
||
|
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@article{Michalski2017,
|
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title={Otoferlin acts as a {Ca$^{2+}$} sensor for vesicle fusion and vesicle pool replenishment at auditory hair cell ribbon synapses},
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author={Michalski, Nicolas and Goutman, Juan D and Auclair, Sarah Marie and de Monvel, Jacques Boutet and Tertrais, Margot and Emptoz, Alice and Parrin, Alexandre and Nouaille, Sylvie and Guillon, Marc and Sachse, Martin and Ciric, Danica and Bahloul, Amel and Hardelin, Jean-Pierre and Sutton, Rodger Bryan and Avan, Paul and Krishnakumar, Shyam S. and Rothman, James E. and Dulon, Didier andSafieddine, Saaid and Petit, Christine},
|
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journal={Elife},
|
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volume={6},
|
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pages={e31013},
|
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year={2017},
|
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}
|
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|
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@ARTICLE{Middleton2006,
|
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AUTHOR = {Jason W. Middleton and Andr\'e Longtin and Jan Benda and Leonard Maler},
|
||
TITLE = {The cellular basis for parallel neural transmission of a high-frequency stimulus and its low-frequency envelope.},
|
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JOURNAL = {Proceedings of the National Academy of Sciences},
|
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YEAR = {2006},
|
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VOLUME = {103},
|
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PAGES = {14596--14601}
|
||
}
|
||
|
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@ARTICLE{Middleton2007,
|
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AUTHOR = {Jason W. Middleton and E. Harvey-Girard and Leonard Maler and Andr\'e Longtin},
|
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TITLE = {Envelope gating and noise shaping in populations of noisy neurons.},
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JOURNAL = {Physical Review E},
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YEAR = {2007},
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VOLUME = {75},
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PAGES = {021918}
|
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}
|
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|
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@ARTICLE{Migliaro2005,
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AUTHOR = {Adriana Migliaro and Angel A. Caputi and Ruben Budelli},
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TITLE = {Theoretical analysis of pre-receptor image conditioning in weakly electric fish.},
|
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JOURNAL = {PLoS Computational Biology},
|
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YEAR = {2005},
|
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VOLUME = {1},
|
||
PAGES = {e16}
|
||
}
|
||
|
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@article{Millman2002,
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title={Effect of duration on amplitude-modulation masking},
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author={Millman, Rebecca E and Lorenzi, Christian and Apoux, Fr{\'e}d{\'e}ric and F{\"u}llgrabe, Christian and Green, Gary GR and Bacon, Sid P},
|
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journal={The Journal of the Acoustical Society of America},
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volume={111},
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number={6},
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pages={2551--2554},
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year={2002},
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publisher={Acoustical Society of America}
|
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}
|
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|
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@Article{Miramontes1996,
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Title = {The Nonlinear Dynamics of Survival and Social Facilitation in Termites},
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Author = {Octavio Miramontes and Og DeSouza},
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Year = {1996},
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Number = {4},
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Pages = {373 - 380},
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|
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Abstract = {This paper describes a study on termites, investigating the relationship between increasing group size and individual worker longevity under resource-deprived conditions. It was found that survival was significantly lower for isolated individuals and higher for individuals in bigger group sizes, suggesting that social interactions play an important role in the mechanisms leading to longer survival. A computer model, incorporating individual interactions among mobile cellular automata is presented along with experiments.},
|
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Doi = {https://doi.org/10.1006/jtbi.1996.0138},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.21},
|
||
Url = {http://www.sciencedirect.com/science/article/pii/S0022519396901381}
|
||
}
|
||
|
||
@article{Moller1972,
|
||
title={Coding of amplitude and frequency modulated sounds in the cochlear nucleus of the rat},
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author={M{\o}ller, Aage R},
|
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journal={Acta Physiologica Scandinavica},
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volume={86},
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number={2},
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pages={223--238},
|
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year={1972},
|
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publisher={Wiley Online Library}
|
||
}
|
||
|
||
@article{Moller1976,
|
||
title={Dynamic properties of primary auditory fibers compared with cells in the cochlear nucleus},
|
||
author={M{\o}ller, Aage R},
|
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journal={Acta Physiologica Scandinavica},
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volume={98},
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number={2},
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pages={157--167},
|
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year={1976},
|
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publisher={Wiley Online Library}
|
||
}
|
||
|
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@Article{Montgomery1984,
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Title = {Frequency Response Characteristics of primary and secondary Neurons in the electrosensory System of the Thornback Ray.},
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Author = {J.C. Montgomery},
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Journal = CompBiochemPhysiol,
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Year = {1984},
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Number = {1},
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Pages = {189-195},
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|
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}
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|
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@Article{Moore1999,
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title={Modulation masking produced by beating modulators},
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author={Moore, Brian CJ and Sek, Aleksander and Glasberg, Brian R},
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journal={The Journal of the Acoustical Society of America},
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volume={106},
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number={2},
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pages={908--918},
|
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year={1999},
|
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publisher={Acoustical Society of America}
|
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}
|
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|
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@article{Moortgat1998,
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author = {Moortgat, KT and Keller, CH and Bullock, TH and Sejnowski, TJ},
|
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journal = {Proceedings of the National Academy of Sciences},
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number = {8},
|
||
pages = {4684--4689},
|
||
title = {Submicrosecond pacemaker precision is behaviorally modulated: the gymnotiform electromotor pathway.},
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volume = {95},
|
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year = {1998}
|
||
}
|
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|
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@Article{Moreno2014,
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title={Information-limiting correlations},
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author={Moreno-Bote, Rub{\'e}n and Beck, Jeffrey and Kanitscheider, Ingmar and Pitkow, Xaq and Latham, Peter and Pouget, Alexandre},
|
||
journal={Nature Neuroscience},
|
||
volume={17},
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||
number={10},
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pages={1410--1417},
|
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year={2014},
|
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publisher={Nature Publishing Group US New York}
|
||
}
|
||
|
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@ARTICLE{Moser2016,
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AUTHOR = {Tobias Moser and Arnold Starr},
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TITLE = {Auditory neuropathy --- neural and synaptic mechanisms.},
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YEAR = {2016},
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JOURNAL = {Nature Reviews Neurology},
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|
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|
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@article{Myers2003,
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title={Rectification and non-linear pre-processing of {EMG} signals for cortico-muscular analysis},
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author={Myers, LJ and Lowery, M and O'malley, M and Vaughan, CL and Heneghan, C and Gibson, A St Clair and Harley, YXR and Sreenivasan, R},
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journal={Journal of Neuroscience Methods},
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volume={124},
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number={2},
|
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pages={157--165},
|
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year={2003},
|
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publisher={Elsevier}
|
||
}
|
||
|
||
@article{Nauhaus2012,
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title={Orthogonal micro-organization of orientation and spatial frequency in primate primary visual cortex},
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author={Nauhaus, Ian and Nielsen, Kristina J and Disney, Anita A and Callaway, Edward M},
|
||
journal={Nature Neuroscience},
|
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volume={15},
|
||
number={12},
|
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pages={1683},
|
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year={2012},
|
||
publisher={Nature Publishing Group}
|
||
}
|
||
|
||
@article{Neiman2011fish,
|
||
title={Sensory coding in oscillatory electroreceptors of paddlefish},
|
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author={Neiman, Alexander B and Russell, David F},
|
||
journal={Chaos: An Interdisciplinary Journal of Nonlinear Science},
|
||
volume={21},
|
||
number={4},
|
||
year={2011},
|
||
publisher={AIP Publishing}
|
||
}
|
||
|
||
@Article{Nelson1997,
|
||
Title = {Characterization and modeling of {P-type} electrosensory afferent responses to amplitude modulations in a wave-type electric fish},
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Author = {Nelson, M. E. and Xu, Z. and Payne, J. R.},
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Pages = {532-544},
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Volume = {181},
|
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ISSN = {0340-7594},
|
||
Keywords = {Key words Computer simulation; Electrolocation Electroreception; Neural model; Sensory coding},
|
||
Language = {English},
|
||
Owner = {jan},
|
||
Publisher = {Springer-Verlag},
|
||
Timestamp = {2015.02.02}
|
||
}
|
||
|
||
@Article{Nelson1999,
|
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AUTHOR = {M. E. Nelson and M. A. MacIver},
|
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TITLE = {Prey capture in the weakly electric fish \textit{Apteronotus albifrons}: sensory acquisition strategies and electrosensory consequences},
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JOURNAL = {Journal of Experimental Biology},
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YEAR = {1999},
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NUMBER = {10},
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}
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YEAR = {2006},
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}
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}
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title={{Neurophysiologische Untersuchungen zum Echoortungssystem der Gro{\ss}en Hufeisennase Rhinolophus ferrum equinum Schreber}, 1774},
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|
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Abstract = {Although examples of variation and diversity exist throughout the nervous system, their importance remains a source of debate. Even neurons of the same molecular type have notable intrinsic differences. Largely unknown, however, is the degree to which these differences impair or assist neural coding. We examined the outputs from a single type of neuron, the mitral cells of the mouse olfactory bulb, to identical stimuli and found that each cell's spiking response was dictated by its unique biophysical fingerprint. Using this intrinsic heterogeneity, diverse populations were able to code for twofold more information than their homogeneous counterparts. In addition, biophysical variability alone reduced pair-wise output spike correlations to low levels. Our results indicate that intrinsic neuronal diversity is important for neural coding and is not simply the result of biological imprecision.},
|
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Institution = {Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania, USA.},
|
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Keywords = {Action Potentials; Animals; Animals, Newborn; Biophysical Phenomena; Biophysics; Electric Stimulation; Entropy; Kv1.2 Potassium Channel; Mice; Mice, Inbred C57BL; Models, Neurological; Nerve Net; Neurons; Olfactory Bulb; Patch-Clamp Techniques; Statistics as Topic},
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Pii = {nn.2630},
|
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Timestamp = {2011.10.20},
|
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}
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Abstract = {One of the most striking patterns in biology is the formation of animal aggregations. Classically, aggregation has been viewed as an evolutionarily advantageous state, in which members derive the benefits of protection, mate choice, and centralized information, balanced by the costs of limiting resources. Consisting of individual members, aggregations nevertheless function as an integrated whole, displaying a complex set of behaviors not possible at the level of the individual organism. Complexity theory indicates that large populations of units can self-organize into aggregations that generate pattern, store information, and engage in collective decision-making. This begs the question, are all emergent properties of animal aggregations functional or are some simply pattern? Solutions to this dilemma will necessitate a closer marriage of theoretical and modeling studies linked to empirical work addressing the choices, and trajectories, of individuals constrained by membership in the group.},
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Doi = {10.1126/science.284.5411.99},
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Owner = {raab},
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Publisher = {American Association for the Advancement of Science},
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Timestamp = {2020.01.30},
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Url = {https://science.sciencemag.org/content/284/5411/99}
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}
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title={Scikit-learn: Machine learning in Python},
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author={Pedregosa, Fabian and Varoquaux, Ga{\"e}l and Gramfort, Alexandre and Michel, Vincent and Thirion, Bertrand and Grisel, Olivier and Blondel, Mathieu and Prettenhofer, Peter and Weiss, Ron and Dubourg, Vincent and others},
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}
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AUTHOR = {Nils Post and Gerhard von der Emde},
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TITLE = {The "novelty response" in an electric fish: response properties and habituation.},
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@article{Preyer1996,
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title={Nonlinearity of mechanoelectrical transduction of outer hair cells as the source of nonlinear basilar-membrane motion and loudness recruitment},
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author={Preyer, Serena and Gummer, Anthony W},
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journal={Audiology and Neurotology},
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@Article{Pugh1999,
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title={Molecular mechanisms of vertebrate photoreceptor light adaptation},
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author={Pugh Jr, EN and Nikonov, S and Lamb, TD},
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journal={Current Opinion in Neurobiology},
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volume={9},
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number={4},
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pages={410--418},
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year={1999},
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publisher={Elsevier}
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}
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@ARTICLE{Pusch2008,
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AUTHOR = {Roland Pusch and Gerhard von der Emde and Michael Hollmann and Joao Bacelo and Sabine N\"obel and Kirsty Grant and Jacob Engelmann},
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TITLE = {Active sensing in a mormyrid fish: electric images and peripheral modifications of the signal carrier give evidence of dual foveation.},
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JOURNAL = {Journal of Experimental Biology},
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YEAR = {2008},
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VOLUME = {211},
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PAGES = {921--9334}
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}
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@article{Quiroga2005,
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title={Invariant visual representation by single neurons in the human brain},
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author={Quiroga, R Quian and Reddy, Leila and Kreiman, Gabriel and Koch, Christof and Fried, Itzhak},
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journal={Nature},
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volume={435},
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number={7045},
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pages={1102--1107},
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year={2005},
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publisher={Nature Publishing Group UK London}
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}
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|
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@article{Quiroga2010,
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title={Postscript: About grandmother cells and Jennifer Aniston neurons.},
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author={Quian Quiroga, Rodrigo and Kreiman, Gabriel},
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year={2010},
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publisher={American Psychological Association}
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}
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|
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@Article{Raab2019,
|
||
Title = {Dominance in Habitat Preference and Diurnal Explorative Behavior of the Weakly Electric Fish \textit{Apteronotus leptorhynchus}},
|
||
Author = {Raab, Till and Linhart, Laura and Wurm, Anna and Benda, Jan},
|
||
Journal = {Frontiers in Integrative Neuroscience},
|
||
Year = {2019},
|
||
Pages = {21},
|
||
Volume = {13},
|
||
|
||
Abstract = {Electrocommunication and -localization behaviors of weakly electric fish have been studied extensively in the lab, mostly by means of short-term observations on constrained fish. Far less is known about their behaviors in more natural-like settings, where fish are less constrained in space and time. We tracked individual fish in a population of fourteen brown ghost knifefish (Apteronotus leptorhynchus) housed in a large 2 m<sup>3</sup> indoor tank based on their electric organ discharges (EOD). The tank contained four different natural-like microhabitats (gravel, plants, isolated stones, stacked stones). In particular during the day individual fish showed preferences for specific habitats which provided appropriate shelter. Male fish with higher EOD frequencies spent more time in their preferred habitat during the day, moved more often between habitats during the night, and less often during the day in comparison to low-frequency males. Our data thus revealed a link between dominance indicated by higher EOD frequency, territoriality, and a more explorative personality in male A. leptorhynchus. In females, movement activity during both day and night correlated positively with EOD frequency. In the night, fish of either sex moved to another habitat after about 6 s on average. During the day, the average transition time was also very short at about 20 s. However, these activity phases were interrupted by phases of inactivity that lasted on average about 20 min during the day, but only 3 min in the night. The individual preference for daytime retreat sites did not reflect the frequent explorative movements at night.},
|
||
Doi = {10.3389/fnint.2019.00021},
|
||
Owner = {raab},
|
||
Timestamp = {2020.01.10},
|
||
Url = {https://www.frontiersin.org/article/10.3389/fnint.2019.00021}
|
||
}
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|
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@Article{Rao1999,
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Title = {Predictive coding in the visual cortex: a functional interpretation of some extra-classical receptive-field effects.},
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Author = {Rajesh P.N. Rao and Dana H. Ballard},
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Journal = {Nature Neuroscience},
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Year = {1999},
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Pages = {79-87},
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}
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@Article{Rao2005,
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Title = {Bayesian inference and attentional modulation in the visual cortex.},
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Author = {Rajesh P.N. Rao},
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Journal = Neuroreport,
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Year = {2005},
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Number = {16},
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Pages = {1843-1848},
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Volume = {16}
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}
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@article{Rasch1984,
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title={Theory of Helmholtz-beat frequencies},
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author={Rasch, Rudolf A},
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journal={Music Perception},
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volume={1},
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number={3},
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pages={308--322},
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year={1984},
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publisher={University of California Press}
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}
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Owner = {raab},
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Timestamp = {2020.02.10}
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}
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}
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Owner = {raab},
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Timestamp = {2020.02.11}
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}
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groups and electrogenic mechanisms.},
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}
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AUTHOR = {Jos\'e Antonio Gama Salgado and G\"unther K.H. Zupanc},
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TITLE = {Echo response to chirping in the weakly electric brown ghost knifefish (\textit{Apteronotus leptorhynchus}): role of frequency and amplitude modulations.},
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YEAR = {2011},
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@article{Salminen2018,
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}
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@ARTICLE{Sanguinetti2011,
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AUTHOR = {Juan Ignacio Sanguinetti-Scheck and Eduardo Federico Pedraja and Esteban Cilleruelo and Adriana Migliaro and Pedro Aguilera and Angel Ariel Caputi and Ruben Budelli},
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JOURNAL = PLOSOne,
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YEAR = {2011},
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PAGES = {e27470}
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}
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@Article{Sapolsky2005,
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Title = {The Influence of Social Hierarchy on Primate Health},
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Author = {Sapolsky, Robert M.},
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Journal = {Science},
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Year = {2005},
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Number = {5722},
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Pages = {648--652},
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Volume = {308},
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|
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Abstract = {Dominance hierarchies occur in numerous social species, and rank within them can greatly influence the quality of life of an animal. In this review, I consider how rank can also influence physiology and health. I first consider whether it is high- or low-ranking animals that are most stressed in a dominance hierarchy; this turns out to vary as a function of the social organization in different species and populations. I then review how the stressful characteristics of social rank have adverse adrenocortical, cardiovascular, reproductive, immunological, and neurobiological consequences. Finally, I consider how these findings apply to the human realm of health, disease, and socioeconomic status.},
|
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Doi = {10.1126/science.1106477},
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Owner = {raab},
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Publisher = {American Association for the Advancement of Science},
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Timestamp = {2020.01.27},
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}
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title={Neural heterogeneities influence envelope and temporal coding at the sensory periphery},
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}
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@article{Sayles2013,
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title={Neurometric amplitude-modulation detection threshold in the guinea-pig ventral cochlear nucleus},
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}
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@INCOLLECTION{Scheffel2006,
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TITLE = {Intra- and interspecific electrocommunication among sympatric mormyrids in the upper {Zambezi} river.},
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}
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@article{Scheich1973,
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title={Coding properties of two classes of afferent nerve fibers: high-frequency electroreceptors in the electric fish, \textit{Eigenmannia}.},
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}
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@article{Schiff1962,
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title={Detecting a periodic signal by a population of spiking neurons in the weakly nonlinear response regime},
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}
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@article{Schmiedt1982,
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title={Boundaries of two-tone rate suppression of cochlear-nerve activity},
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author={Schmiedt, Richard A},
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}
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title={Transfer characteristics of first and second order lateral canal vestibular neurons in gerbil},
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}
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}
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title={Natural ultrasonic echoes from wing beating insects are encoded by collicular neurons in the {CF-FM bat, Rhinolophus ferrumequinum}},
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@ARTICLE{Schwan1963,
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AUTHOR = {Herman P. Schwan},
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Timestamp = {2020.02.11}
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}
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title={Beyond the {Jamming Avoidance Response}: weakly electric fish respond to the envelope of social electrosensory signals},
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}
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@Article{Strandburg2015,
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Title = {Shared decision-making drives collective movement in wild baboons},
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Journal = {Science},
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Abstract = {How do groups of animals, including humans, make decisions that affect the entire group? Evidence collected from schooling animals suggests that the process is somewhat democratic, with nearest neighbors and the majority shaping overall collective behavior. In animals with hierarchical social structures such as primates or wolves, however, such democracy may be complicated by dominance. Strandburg-Peshkin et al. monitored all the individuals within a baboon troop continuously over the course of their daily activities. Even within this highly socially structured species, movement decisions emerged via a shared process. Thus, democracy may be an inherent trait of collective behavior.Science, this issue p. 1358Conflicts of interest about where to go and what to do are a primary challenge of group living. However, it remains unclear how consensus is achieved in stable groups with stratified social relationships. Tracking wild baboons with a high-resolution global positioning system and analyzing their movements relative to one another reveals that a process of shared decision-making governs baboon movement. Rather than preferentially following dominant individuals, baboons are more likely to follow when multiple initiators agree. When conflicts arise over the direction of movement, baboons choose one direction over the other when the angle between them is large, but they compromise if it is not. These results are consistent with models of collective motion, suggesting that democratic collective action emerging from simple rules is widespread, even in complex, socially stratified societies.},
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Doi = {10.1126/science.aaa5099},
|
||
Owner = {raab},
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Publisher = {American Association for the Advancement of Science},
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Timestamp = {2020.02.11},
|
||
Url = {https://science.sciencemag.org/content/348/6241/1358}
|
||
}fmidd
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|
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frequency $\nu$(○) can be described through a
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sequence of discrete events. Here, we study the
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synchrony vector, whose length stands for the vector
|
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strength, and in doing so focus on neuronal response
|
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in terms of spike times. The latter are supposed to
|
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be given by experiment. Instead of singling out the
|
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stimulus frequency $\nu$(○) we study the synchrony
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vector as a function of the real frequency variable
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$\nu$. Its length turns out to be a resonating vector
|
||
strength in that it shows clear maxima in the
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neighborhood of $\nu$(○) and multiples thereof,
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hence, allowing an easy way of determining response
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frequencies. We study this "resonating" vector
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strength for two concrete but rather different cases,
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viz., a specific midbrain neuron in the auditory
|
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system of cat and a primary detector neuron belonging
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to the electric sense of the wave-type electric fish
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\textit{Apteronotus leptorhynchus}. We show that the
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demonstrate how well the resonance associated with
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maximal vector strength indicates the dominant
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stimulus frequency. Furthermore, we exhibit how one
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can obtain a specific phase associated with, for
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instance, a delay in auditory analysis.},
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@ARTICLE{Westby1988,
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Abstract = {To evolve and to be maintained, seasonal migration, despite its risks, has to yield fitness benefits compared with year-round residency. Empirical data supporting this prediction have remained elusive in the bird literature. To test fitness related benefits of migration, we studied a partial migratory population of European blackbirds (\textit{Turdus merula}) over 7 years. Using a combination of capture-mark-recapture and radio telemetry, we compared survival probabilities between migrants and residents estimated by multi-event survival models, showing that migrant blackbirds had 16\% higher probability to survive the winter compared to residents. A subsequent modelling exercise revealed that residents should have 61.25\% higher breeding success than migrants, to outweigh the survival costs of residency. Our results support theoretical models that migration should confer survival benefits to evolve, and thus provide empirical evidence to understand the evolution and maintenance of migration.},
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