More papers, little bit of text.

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@ -29,7 +29,8 @@
volume={99},
pages={15--24},
year={2017},
}
}# Cited
@article{breckow1985mechanics,
title={Mechanics of the transduction of sound in the tympanal organ of adults and larvae of locusts},
author={Breckow, Joachim and Sippel, Martin},
@ -100,6 +101,16 @@
pages={2575--2580},
year={2009},
}
@article{eberhard2015temperature,
title={A temperature rise reduces trial-to-trial variability of locust auditory neuron responses},
author={Eberhard, Monika JB and Schleimer, Jan-Hendrik and Schreiber, Susanne and Ronacher, Bernhard},
journal={Journal of neurophysiology},
volume={114},
number={3},
pages={1424--1437},
year={2015},
publisher={American Physiological Society Bethesda, MD}
}
@article{eichendorf1980projections,
title={Projections of auditory ventral-cord neurons in the supraesophageal ganglion of Locusta migratoria},
author={Eichendorf, Annette and Kalmring, Klaus},
@ -109,7 +120,8 @@
pages={133--149},
year={1980},
publisher={Springer}
}
}# Cited
@article{fisch2012channel,
title={Channel noise from both slow adaptation currents and fast currents is required to explain spike-response variability in a sensory neuron},
author={Fisch, Karin and Schwalger, Tilo and Lindner, Benjamin and Herz, Andreas VM and Benda, Jan},
@ -161,16 +173,6 @@
pages={433--450},
year={1996},
}
@article{kalmring1975afferent,
title={The afferent auditory pathway in the ventral cord of Locusta migratoria (Acrididae) I. Synaptic connectivity and information processing among the auditory neurons of the ventral cord},
author={Kalmring, Klaus},
journal={Journal of comparative physiology},
volume={104},
number={2},
pages={103--141},
year={1975},
publisher={Springer}
}
@article{kalmring1972akustische,
title={Akustische Neuronen im Bauchmark der Wanderheuschrecke Locusta migratoria},
author={Kalmring, Klaus and Rheinlaender, J{\"u}rgen and Rehbein, Hansgeorg},
@ -181,6 +183,17 @@
year={1972},
publisher={Springer}
}
@article{kalmring1975afferent,
title={The afferent auditory pathway in the ventral cord of Locusta migratoria (Acrididae) I. Synaptic connectivity and information processing among the auditory neurons of the ventral cord},
author={Kalmring, Klaus},
journal={Journal of comparative physiology},
volume={104},
number={2},
pages={103--141},
year={1975},
publisher={Springer}
}# Cited
@article{kalmring1978coding,
title={The coding of sound signals in the ventral-cord auditory system of the migratory locust, Locusta migratoria},
author={Kalmring, Klaus and K{\"u}hne, Roland and Moysich, Fritz},
@ -218,6 +231,16 @@
year={2001},
}# Cited
@article{machens2003single,
title={Single auditory neurons rapidly discriminate conspecific communication signals},
author={Machens, Christian K and Sch{\"u}tze, Hartmut and Franz, Astrid and Kolesnikova, Olga and Stemmler, Martin B and Ronacher, Bernhard and Herz, Andreas VM},
journal={Nature neuroscience},
volume={6},
number={4},
pages={341--342},
year={2003},
publisher={Nature Publishing Group US New York}
}
@article{malkin2014energy,
title={Energy localization and frequency analysis in the locust ear},
author={Malkin, Robert and McDonagh, Thomas R and Mhatre, Natasha and Scott, Thomas S and Robert, Daniel},
@ -252,6 +275,16 @@
pages={1965--1974},
year={2008},
}
@article{prinz2002temporal,
title={Temporal modulation transfer functions in auditory receptor fibres of the locust (Locusta migratoria L.)},
author={Prinz, P and Ronacher, B},
journal={Journal of Comparative Physiology A},
volume={188},
number={7},
pages={577--587},
year={2002},
publisher={Springer}
}
@article{rehbein1974structure,
title={Structure and function of acoustic neurons in the thoracic ventral nerve cord of Locusta migratoria (Acrididae)},
author={Rehbein, Hansgeorg and Kalmring, Klaus and R{\"o}mer, Heiner},
@ -302,6 +335,26 @@
pages={363--374},
year={1986},
}
@article{ronacher2008discrimination,
title={Discrimination of acoustic communication signals by grasshoppers (Chorthippus biguttulus): temporal resolution, temporal integration, and the impact of intrinsic noise.},
author={Ronacher, Bernhard and Wohlgemuth, Sandra and Vogel, Astrid and Krahe, R{\"u}diger},
journal={Journal of Comparative Psychology},
volume={122},
number={3},
pages={252},
year={2008},
publisher={American Psychological Association}
}
@article{ronacher2013processing,
title={Processing of acoustic signals in grasshoppers--a neuroethological approach towards female choice},
author={Ronacher, Bernhard and Stange, Nicole},
journal={Journal of Physiology-Paris},
volume={107},
number={1-2},
pages={41--50},
year={2013},
publisher={Elsevier}
}
@article{ronacher2015computational,
title={Computational principles underlying recognition of acoustic signals in grasshoppers and crickets},
author={Ronacher, Bernhard and Hennig, R Matthias and Clemens, Jan},
@ -441,3 +494,14 @@
pages={1435--1443},
year={2008},
}# Cited
@article{wirtssohn2015temporal,
title={Temporal integration at consecutive processing stages in the auditory pathway of the grasshopper},
author={Wirtssohn, Sarah and Ronacher, Bernhard},
journal={Journal of neurophysiology},
volume={113},
number={7},
pages={2280--2288},
year={2015},
publisher={American Physiological Society Bethesda, MD}
}

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@ -2366,19 +2366,22 @@
<bcf:citekey order="2" intorder="1">clemens2013feature</bcf:citekey>
<bcf:citekey order="3" intorder="1">ronacher2015computational</bcf:citekey>
<bcf:citekey order="4" intorder="1">rehbein1974structure</bcf:citekey>
<bcf:citekey order="5" intorder="1">rehbein1976auditory</bcf:citekey>
<bcf:citekey order="6" intorder="1">clemens2011efficient</bcf:citekey>
<bcf:citekey order="7" intorder="1">clemens2011efficient</bcf:citekey>
<bcf:citekey order="8" intorder="1">michelsen1971frequency</bcf:citekey>
<bcf:citekey order="9" intorder="1">windmill2008time</bcf:citekey>
<bcf:citekey order="10" intorder="1">malkin2014energy</bcf:citekey>
<bcf:citekey order="11" intorder="1">machens2001discrimination</bcf:citekey>
<bcf:citekey order="12" intorder="1">machens2001representation</bcf:citekey>
<bcf:citekey order="13" intorder="1">suga1960peripheral</bcf:citekey>
<bcf:citekey order="14" intorder="1">gollisch2002energy</bcf:citekey>
<bcf:citekey order="15" intorder="1">hildebrandt2009origin</bcf:citekey>
<bcf:citekey order="16" intorder="1">clemens2010intensity</bcf:citekey>
<bcf:citekey order="17" intorder="1">fisch2012channel</bcf:citekey>
<bcf:citekey order="5" intorder="1">kalmring1975afferent</bcf:citekey>
<bcf:citekey order="6" intorder="1">rehbein1976auditory</bcf:citekey>
<bcf:citekey order="7" intorder="1">eichendorf1980projections</bcf:citekey>
<bcf:citekey order="8" intorder="1">clemens2011efficient</bcf:citekey>
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<bcf:citekey order="18" intorder="1">hildebrandt2009origin</bcf:citekey>
<bcf:citekey order="19" intorder="1">clemens2010intensity</bcf:citekey>
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@ -134,10 +134,25 @@ $\rightarrow$ More general, simpler, unfitted formalized Gabor filter bank
\section{Developing a functional model of\\the grasshopper auditory pathway}
The auditory pathway of grasshoppers comprises a number of neuronal stages and
identified cell types~(\bcite{rehbein1974structure}; \bcite{rehbein1976auditory}).
% Either pick up in intro and/or discussion, or move entirely:
The grasshopper auditory system has been studied extensively over the past
decades; and a corresponding number of involved neuron types has been
described~(\bcite{rehbein1974structure}; \bcite{kalmring1975afferent};
\bcite{rehbein1976auditory}; \bcite{eichendorf1980projections}). The model we
propose here focuses on the pathway responsible for song recognition and
assumes a strict feed-forward organization of three consecutive neuronal
populations: Peripheral auditory receptor neurons~\mbox{(1st order)}, local
interneurons of the metathoracic ganglion~\mbox{(2nd order)}, and ascending
neurons~\mbox{(3rd order)} projecting towards the supraesophageal ganglion.
Previous authors have reported a marked increase in response heterogenity
within the population of ascending neurons compared to receptors and local
interneurons, which exhibit almost identical filter characteristics,
respectively~(\bcite{clemens2011efficient}). Based on these findings, the model
pathway can be divided into two distinct portions~(Fig.\,\ref{fig:pathway}c+d).
The pre-processing portion comprises the tympanal membrane, receptors, and
local interneurons. Due to the similar response properties within the
Along the auditory pathway of grasshoppers (Fig.\,\ref{fig:pathway}a+b),
1) "Pre-split portion" of the auditory pathway:\\
Tympanal membrane $\rightarrow$ Receptor neurons $\rightarrow$ Local interneurons