Holiday syncing.
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135
cite.bib
@ -43,7 +43,8 @@
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title={{Orthoptera Species File. Version 5.0/5.0}},
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author={Cigliano, MM and Braun, H and Eades, DC and Otte, D},
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year={2018}
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}
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}# Cited
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@article{clemens2013computational,
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title={Computational principles underlying the recognition of acoustic signals in insects},
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author={Clemens, Jan and Hennig, R Matthias},
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@ -140,6 +141,82 @@
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year={2002},
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}# Cited
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@article{greenfield1993acoustic,
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title={Acoustic dueling in tarbush grasshoppers: settlement of territorial contests via alternation of reliable signals},
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author={Greenfield, Michael D and Minckley, Robert L},
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journal={Ethology},
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volume={95},
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number={4},
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pages={309--326},
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year={1993},
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publisher={Wiley Online Library}
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}# Cited
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@article{helversen1972gesang,
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title={Gesang des m{\"a}nnchens und lautschema des weibchens bei der feldheuschrecke Chorthippus biguttulus (Orthoptera, Acrididae)},
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author={von Helversen, Dagmar},
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journal={Journal of Comparative Physiology},
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volume={81},
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number={4},
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pages={381--422},
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year={1972},
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publisher={Springer}
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}# Cited
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@article{helversen1977stridulatory,
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title={The stridulatory movements of acridid grasshoppers recorded with an opto-electronic device},
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author={von Helversen, Otto and Elsner, Norbert},
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journal={J Comp Physiol A},
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volume={122},
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pages={53--64},
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year={1977},
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}
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@article{helversen1984parallel,
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title={{Parallel processing in auditory pattern recognition and directional analysis by the grasshopper Chorthippus biguttulus L. (Acrididae)}},
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author={von Helversen, Dagmar},
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journal={J Comp Physiol A},
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volume={154},
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pages={837--846},
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year={1984},
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}
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@article{helversen1988interaural,
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title={Interaural intensity and time discrimination in an unrestraint grasshopper: a tentative behavioural approach},
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author={von Helversen, Dagmar and Rheinlaender, J{\"u}rgen},
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journal={Journal of comparative physiology A},
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volume={162},
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number={3},
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pages={333--340},
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year={1988},
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publisher={Springer}
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}# Cited
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@article{helversen1993absolute,
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title={{‘Absolute steepness’ of ramps as an essential cue for auditory pattern recognition by a grasshopper (Orthoptera; Acrididae; Chorthippus biguttulus L.)}},
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author={von Helversen, Dagmar},
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journal={J Comp Physiol A},
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volume={172},
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pages={633--639},
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year={1993},
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}
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@article{helversen1997recognition,
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title={Recognition of sex in the acoustic communication of the grasshopper Chorthippus biguttulus (Orthoptera, Acrididae)},
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author={von Helversen, Dagmar and von Helversen, Otto},
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journal={Journal of Comparative Physiology A},
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volume={180},
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number={4},
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pages={373--386},
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year={1997},
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publisher={Springer}
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}
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@article{helversen2004acoustic,
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title={{Acoustic communication in a duetting grasshopper: Receiver response variability, male strategies and signal design}},
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author={von Helversen, Dagmar and Balakrishnan, Rohini and von Helversen, Otto},
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journal={Anim Behav},
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volume={68},
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pages={131--144},
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year={2004},
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}
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@article{hennig2014time,
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title={Time and timing in the acoustic recognition system of crickets},
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author={Hennig, R Matthias and Heller, Klaus-Gerhard and Clemens, Jan},
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@ -267,6 +344,14 @@
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year={1971},
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}# Cited
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@incollection{michelsen1978sound,
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title={Sound reception in different environments},
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author={Michelsen, Axel},
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booktitle={Sensory ecology: review and perspectives},
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pages={345--373},
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year={1978},
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publisher={Springer}
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}
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@article{neuhofer2008evolutionarily,
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title={Evolutionarily conserved coding properties of auditory neurons across grasshopper species},
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author={Neuhofer, Daniela and Wohlgemuth, Sandra and Stumpner, Andreas and Ronacher, Bernhard},
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@ -275,6 +360,12 @@
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pages={1965--1974},
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year={2008},
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}
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@article{otte1970comparative,
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title={A comparative study of communicative behavior in grasshoppers.},
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author={Otte, Daniel},
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year={1970},
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publisher={University of Michigan Museum of Zoology}
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}
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@article{prinz2002temporal,
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title={Temporal modulation transfer functions in auditory receptor fibres of the locust (Locusta migratoria L.)},
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author={Prinz, P and Ronacher, B},
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@ -381,6 +472,16 @@
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year={1983},
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publisher={Springer}
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}
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@article{snedden1998mechanisms,
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title={Mechanisms of selective attention in grasshopper choruses: who listens to whom?},
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author={Snedden, W Andy and Greenfield, Michael D and Jang, Yikweon},
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journal={Behavioral Ecology and Sociobiology},
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volume={43},
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number={1},
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pages={59--66},
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year={1998},
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publisher={Springer}
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}
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@article{stumpner1994song,
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title={{Song production and song recognition in a group of sibling grasshopper species (Chorthippus dorsatus, Ch. dichrous and Ch. loratus: Orthoptera, Acrididae)}},
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author={Stumpner, Andreas and von Helversen, Otto},
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@ -454,38 +555,6 @@
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pages={834--843},
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year={2013},
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}
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@article{von1984parallel,
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title={{Parallel processing in auditory pattern recognition and directional analysis by the grasshopper Chorthippus biguttulus L. (Acrididae)}},
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author={von Helversen, Dagmar},
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journal={J Comp Physiol A},
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volume={154},
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pages={837--846},
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year={1984},
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}
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@article{von1993absolute,
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title={{‘Absolute steepness’ of ramps as an essential cue for auditory pattern recognition by a grasshopper (Orthoptera; Acrididae; Chorthippus biguttulus L.)}},
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author={von Helversen, Dagmar},
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journal={J Comp Physiol A},
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volume={172},
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pages={633--639},
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year={1993},
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}
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@article{von2004acoustic,
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title={{Acoustic communication in a duetting grasshopper: Receiver response variability, male strategies and signal design}},
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author={von Helversen, Dagmar and Balakrishnan, Rohini and von Helversen, Otto},
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journal={Anim Behav},
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volume={68},
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pages={131--144},
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year={2004},
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}
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@article{von1977stridulatory,
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title={The stridulatory movements of acridid grasshoppers recorded with an opto-electronic device},
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author={von Helversen, Otto and Elsner, Norbert},
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journal={J Comp Physiol A},
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volume={122},
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pages={53--64},
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year={1977},
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}
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@article{windmill2008time,
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title={Time-resolved tympanal mechanics of the locust},
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author={Windmill, JFC and Bockenhauer, S and Robert, D},
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main.aux
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@ -1,15 +1,31 @@
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46
main.bcf
46
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2371
main.bcf-SAVE-ERROR
2371
main.bcf-SAVE-ERROR
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62
main.blg
62
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[365] Biber.pm:131> WARN - BibTeX subsystem: /tmp/biber_tmp_eiYi/347c261ec4135a5723bef5c751f5078f_49294.utf8, line 88, warning: 6 characters of junk seen at toplevel
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56
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@ -86,15 +86,59 @@ systems that process the same sensory modality. Any unified framework that
|
||||
captures the essential functional aspects of a given sensory system thus has
|
||||
the potential to deepen our current understanding and fasciliate systematic
|
||||
investigations. However, building such a framework is a challenging task. It
|
||||
requires a wealth of existing knowledge, a clearly defined scope, and careful
|
||||
reduction, abstraction, and formalization of the underlying anatomical
|
||||
structures and physiological mechanisms.
|
||||
requires a wealth of existing knowledge of the system and the signals it
|
||||
operates on, a clearly defined scope, and careful reduction, abstraction, and
|
||||
formalization of the underlying anatomical structures and physiological
|
||||
mechanisms.
|
||||
|
||||
The auditory system of grasshoppers provides an excellent case study for
|
||||
One sensory system about which extensive information has been gathered over the
|
||||
years is the auditory system of grasshoppers~(\textit{Acrididae}). Grasshoppers
|
||||
rely on auditory processing primarily for intraspecific communication, which
|
||||
includes mate attraction and evaluation~(\bcite{helversen1972gesang}), sender
|
||||
localization~(\bcite{helversen1988interaural}), courtship display~(SOURCE),
|
||||
rival deterrence~(\bcite{greenfield1993acoustic}), and loss-of-signal predator
|
||||
alarm~(SOURCE). The different behavioral contexts are met with
|
||||
|
||||
One such sensory system that has been studied extensively over the course of
|
||||
decades is the auditory system of grasshoppers~(\textit{Acrididae}).
|
||||
Different acustic signals are used for different behavioral
|
||||
contexts and communication ranges
|
||||
|
||||
Depending on the behavioral context and the communication range,
|
||||
|
||||
|
||||
Grasshoppers generate their most conspicious acoustic signals
|
||||
---~commonly referred to as "songs"~--- by stridulation.
|
||||
|
||||
|
||||
Different acoustic signals may be generated using different
|
||||
body parts ---~wings, hindlegs, or mandibles~---
|
||||
|
||||
|
||||
Different acoustic signals may be generated using different
|
||||
body parts ---~wings, hindlegs, or mandibles~--- but the most conspicious
|
||||
|
||||
|
||||
The required acoustic signals for different contexts and ranges
|
||||
may be generated using different body parts ---~wings, hindlegs, or
|
||||
mandibles~--- but the most common sound production mechanism is stridulation,
|
||||
during which the animal pulls the serrated stridulatory file on its hindlegs
|
||||
across a resonating vein on the forewings. The resulting "songs"
|
||||
|
||||
|
||||
The reliance on acoustic communication signals represents a strong evolutionary
|
||||
driving force, that resulted in a massive species diversification among
|
||||
grasshoppers~(\bcite{vedenina2011speciation},
|
||||
\bcite{sevastianov2023evolution}).
|
||||
|
||||
|
||||
|
||||
Grasshoppers produce their most conspicious acoustic signals
|
||||
---~commonly referred to as "songs"~--- by stridulation, during which the
|
||||
animal rubs the serrated stridulatory file on its hindleg across a resonating
|
||||
vein on the forewing.
|
||||
|
||||
Among the several thousand recognized grasshopper
|
||||
species~(\bcite{cigliano2018orthoptera}), diverse species-specific sound
|
||||
repertoires and production mechanisms
|
||||
|
||||
|
||||
|
||||
|
||||
Loading…
Reference in New Issue
Block a user