diff --git a/cite.bib b/cite.bib index f5617b5..13dcdef 100644 --- a/cite.bib +++ b/cite.bib @@ -82,7 +82,8 @@ volume={196}, pages={285--297}, year={2010}, -} +}# Cited + @article{creutzig2010timescale, title={Timescale-invariant pattern recognition by feedforward inhibition and parallel signal processing}, author={Creutzig, Felix and Benda, Jan and Wohlgemuth, Sandra and Stumpner, Andreas and Ronacher, Bernhard and Herz, Andreas VM}, @@ -106,7 +107,8 @@ volume={32}, pages={17332--17344}, year={2012}, -} +}# Cited + @article{gollisch2002energy, title={Energy integration describes sound-intensity coding in an insect auditory system}, author={Gollisch, Tim and Sch{\"u}tze, Hartmut and Benda, Jan and Herz, Andreas VM}, @@ -114,7 +116,8 @@ volume={22}, pages={10434--10448}, year={2002}, -} +}# Cited + @article{hennig2014time, title={Time and timing in the acoustic recognition system of crickets}, author={Hennig, R Matthias and Heller, Klaus-Gerhard and Clemens, Jan}, @@ -162,7 +165,8 @@ volume={38--40}, pages={263--268}, year={2001}, -} +}# Cited + @article{machens2001representation, title={Representation of acoustic communication signals by insect auditory receptor neurons}, author={Machens, Christian K and Stemmler, Martin B and Prinz, Petra and Krahe, R{\"u}diger and Ronacher, Bernhard and Herz, Andreas VM}, @@ -170,7 +174,8 @@ volume={21}, pages={3215--3227}, year={2001}, -} +}# Cited + @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}, @@ -274,7 +279,8 @@ volume={10}, pages={533--546}, year={1960}, -} +}# Cited + @article{tarasova2021biguttulus, title={{Songs and morphology in three species of the Chorthippus biguttulus group (Orthoptera, Acrididae, Gomphocerinae) in Russia and adjacent countries}}, author={Tarasova, Tatiana and Tishechkin, Dmitry and Vedenina, Varvara}, diff --git a/main.aux b/main.aux index 3b942ab..97d0c19 100644 --- a/main.aux +++ b/main.aux @@ -18,8 +18,14 @@ \abx@aux@segm{0}{0}{windmill2008time} \abx@aux@cite{0}{malkin2014energy} \abx@aux@segm{0}{0}{malkin2014energy} -\abx@aux@cite{0}{clemens2011efficient} -\abx@aux@segm{0}{0}{clemens2011efficient} +\abx@aux@cite{0}{machens2001discrimination} +\abx@aux@segm{0}{0}{machens2001discrimination} +\abx@aux@cite{0}{machens2001representation} +\abx@aux@segm{0}{0}{machens2001representation} +\abx@aux@cite{0}{suga1960peripheral} +\abx@aux@segm{0}{0}{suga1960peripheral} +\abx@aux@cite{0}{gollisch2002energy} +\abx@aux@segm{0}{0}{gollisch2002energy} \@writefile{lof}{\contentsline {figure}{\numberline {1}{\ignorespaces Grasshopper auditory system}}{3}{}\protected@file@percent } \newlabel{fig:pathway}{{1}{3}{}{}{}} \@writefile{toc}{\contentsline {subsection}{\numberline {2.1}Population-driven signal pre-processing}{3}{}\protected@file@percent } @@ -28,30 +34,42 @@ \abx@aux@page{6}{3} \newlabel{eq:bandpass}{{1}{3}{}{}{}} 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grasshoppers} + \field{volume}{196} + \field{year}{2010} + \field{pages}{285\bibrangedash 297} + \range{pages}{13} + \endentry + \entry{fisch2012channel}{article}{} + \name{author}{5}{}{% + {{un=0,uniquepart=base,hash=768856a27f0efb241f011f58c128f445}{% + family={Fisch}, + familyi={F\bibinitperiod}, + given={Karin}, + giveni={K\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=9b42eb6cabb49891b713f722310ddc96}{% + family={Schwalger}, + familyi={S\bibinitperiod}, + given={Tilo}, + giveni={T\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=abd97a473cbb49c6bb09d0307c8b0489}{% + family={Lindner}, + familyi={L\bibinitperiod}, + given={Benjamin}, + giveni={B\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b7f9fb3e1e84e5a6ac5dec33ca4db532}{% + family={Herz}, + familyi={H\bibinitperiod}, + given={Andreas\bibnamedelima VM}, + giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=f0049b5905ec2af7caf4cdf6b716a30a}{% + family={Benda}, + familyi={B\bibinitperiod}, + given={Jan}, + giveni={J\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{fullhash}{1f72ce7819fe64ddbffc8482db101012} + \strng{bibnamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authorbibnamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authornamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authorfullhash}{1f72ce7819fe64ddbffc8482db101012} + \field{sortinit}{F} + \field{sortinithash}{2638baaa20439f1b5a8f80c6c08a13b4} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{J Neurosci} + \field{title}{Channel noise from both slow adaptation currents and fast currents is required to explain spike-response variability in a sensory neuron} + \field{volume}{32} + \field{year}{2012} + \field{pages}{17332\bibrangedash 17344} + \range{pages}{13} + \endentry + \entry{gollisch2002energy}{article}{} + \name{author}{4}{}{% + {{un=0,uniquepart=base,hash=376cc9f4803f0227f679089e863cbce8}{% + family={Gollisch}, + familyi={G\bibinitperiod}, + given={Tim}, + giveni={T\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=d4da34eda9dbbc64f3dcd0ccbc47a19a}{% + family={Schütze}, + familyi={S\bibinitperiod}, + given={Hartmut}, + giveni={H\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=f0049b5905ec2af7caf4cdf6b716a30a}{% + family={Benda}, + familyi={B\bibinitperiod}, + given={Jan}, + giveni={J\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b7f9fb3e1e84e5a6ac5dec33ca4db532}{% + family={Herz}, + familyi={H\bibinitperiod}, + given={Andreas\bibnamedelima VM}, + giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{fe6dd45c70802800d4f79fbfe26cb1d1} + \strng{fullhash}{1df8a66667f5bd3602405c61e46f4111} + \strng{bibnamehash}{fe6dd45c70802800d4f79fbfe26cb1d1} + 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\strng{authorbibnamehash}{a0795724971c96d0b96cce88b37c5ba8} + \strng{authornamehash}{a0795724971c96d0b96cce88b37c5ba8} + \strng{authorfullhash}{b05fd09edb491b225d8cb381813053b0} + \field{sortinit}{M} + \field{sortinithash}{4625c616857f13d17ce56f7d4f97d451} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{Neurocomputing} + \field{title}{Discrimination of behaviorally relevant signals by auditory receptor neurons} + \field{volume}{38--40} + \field{year}{2001} + \field{pages}{263\bibrangedash 268} + \range{pages}{6} + \endentry + \entry{machens2001representation}{article}{} + \name{author}{6}{ul=2}{% + {{un=0,uniquepart=base,hash=ffe881e395423136438b1d8d31ae69bc}{% + family={Machens}, + familyi={M\bibinitperiod}, + given={Christian\bibnamedelima K}, + giveni={C\bibinitperiod\bibinitdelim K\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=cb1863245180bea7ac4e4916d1a01eef}{% + family={Stemmler}, + familyi={S\bibinitperiod}, + given={Martin\bibnamedelima B}, + giveni={M\bibinitperiod\bibinitdelim B\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=bf662a8dacfbdfaae777b88db2604a30}{% + family={Prinz}, + familyi={P\bibinitperiod}, + given={Petra}, + giveni={P\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b907e2f183e451f2d80b83e1bd722595}{% + family={Krahe}, + familyi={K\bibinitperiod}, + given={Rüdiger}, + giveni={R\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=4ce9349f95ced7a4831a5efa0fe5b00f}{% + family={Ronacher}, + familyi={R\bibinitperiod}, + given={Bernhard}, + giveni={B\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b7f9fb3e1e84e5a6ac5dec33ca4db532}{% + family={Herz}, + familyi={H\bibinitperiod}, + given={Andreas\bibnamedelima VM}, + giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{fullhash}{39a028cabd0c29ba9ccf10130f0d41cc} + \strng{bibnamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authorbibnamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authornamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authorfullhash}{39a028cabd0c29ba9ccf10130f0d41cc} + \field{sortinit}{M} + \field{sortinithash}{4625c616857f13d17ce56f7d4f97d451} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{J Neurosci} + \field{title}{Representation of acoustic communication signals by insect auditory receptor neurons} + \field{volume}{21} + \field{year}{2001} + \field{pages}{3215\bibrangedash 3227} + \range{pages}{13} + \endentry \entry{malkin2014energy}{article}{} \name{author}{5}{}{% {{un=0,uniquepart=base,hash=b240d4c2c38b76890194edc503159f6c}{% @@ -259,6 +513,34 @@ \field{pages}{61\bibrangedash 71} \range{pages}{11} \endentry + \entry{suga1960peripheral}{article}{} + \name{author}{1}{}{% + {{un=0,uniquepart=base,hash=cb8492490b7b1d1c021ccd740577eab6}{% + family={Suga}, + familyi={S\bibinitperiod}, + given={Nobuo}, + giveni={N\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{fullhash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{bibnamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authorbibnamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authornamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authorfullhash}{cb8492490b7b1d1c021ccd740577eab6} + \field{sortinit}{S} + \field{sortinithash}{b164b07b29984b41daf1e85279fbc5ab} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{Jpn J Physiol} + \field{title}{Peripheral mechanism of hearing in locust} + \field{volume}{10} + \field{year}{1960} + \field{pages}{533\bibrangedash 546} + \range{pages}{14} + \endentry \entry{windmill2008time}{article}{} \name{author}{3}{}{% {{un=0,uniquepart=base,hash=73f39430fed095cb0a958656d3b5edc5}{% diff --git a/main.bbl-SAVE-ERROR b/main.bbl-SAVE-ERROR index 5d51d36..66c316f 100644 --- a/main.bbl-SAVE-ERROR +++ b/main.bbl-SAVE-ERROR @@ -139,6 +139,266 @@ \field{pages}{12136\bibrangedash 12145} \range{pages}{10} \endentry + \entry{fisch2012channel}{article}{} + \name{author}{5}{}{% + {{un=0,uniquepart=base,hash=768856a27f0efb241f011f58c128f445}{% + family={Fisch}, + familyi={F\bibinitperiod}, + given={Karin}, + giveni={K\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=9b42eb6cabb49891b713f722310ddc96}{% + family={Schwalger}, + familyi={S\bibinitperiod}, + given={Tilo}, + giveni={T\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=abd97a473cbb49c6bb09d0307c8b0489}{% + family={Lindner}, + familyi={L\bibinitperiod}, + given={Benjamin}, + giveni={B\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b7f9fb3e1e84e5a6ac5dec33ca4db532}{% + family={Herz}, + familyi={H\bibinitperiod}, + given={Andreas\bibnamedelima VM}, + giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=f0049b5905ec2af7caf4cdf6b716a30a}{% + family={Benda}, + familyi={B\bibinitperiod}, + given={Jan}, + giveni={J\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{fullhash}{1f72ce7819fe64ddbffc8482db101012} + \strng{bibnamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authorbibnamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authornamehash}{8cb430c65a969154eb4fea8ea4e3d713} + \strng{authorfullhash}{1f72ce7819fe64ddbffc8482db101012} + \field{sortinit}{F} + \field{sortinithash}{2638baaa20439f1b5a8f80c6c08a13b4} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{J Neurosci} + \field{title}{Channel noise from both slow adaptation currents and fast currents is required to explain spike-response variability in a sensory neuron} + \field{volume}{32} + \field{year}{2012} + \field{pages}{17332\bibrangedash 17344} + \range{pages}{13} + \endentry + \entry{gollisch2002energy}{article}{} + \name{author}{4}{}{% + {{un=0,uniquepart=base,hash=376cc9f4803f0227f679089e863cbce8}{% + family={Gollisch}, + familyi={G\bibinitperiod}, + given={Tim}, + giveni={T\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=d4da34eda9dbbc64f3dcd0ccbc47a19a}{% + family={Schütze}, + familyi={S\bibinitperiod}, + given={Hartmut}, + giveni={H\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=f0049b5905ec2af7caf4cdf6b716a30a}{% + family={Benda}, + familyi={B\bibinitperiod}, + given={Jan}, + giveni={J\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=b7f9fb3e1e84e5a6ac5dec33ca4db532}{% + family={Herz}, + familyi={H\bibinitperiod}, + given={Andreas\bibnamedelima VM}, + giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + } + 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giveni={A\bibinitperiod\bibinitdelim V\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{fullhash}{39a028cabd0c29ba9ccf10130f0d41cc} + \strng{bibnamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authorbibnamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authornamehash}{88be68ddbc1a9c3ef4c876eec034f704} + \strng{authorfullhash}{39a028cabd0c29ba9ccf10130f0d41cc} + \field{sortinit}{M} + \field{sortinithash}{4625c616857f13d17ce56f7d4f97d451} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{J Neurosci} + \field{title}{Representation of acoustic communication signals by insect auditory receptor neurons} + \field{volume}{21} + \field{year}{2001} + \field{pages}{3215\bibrangedash 3227} + \range{pages}{13} + \endentry + \entry{malkin2014energy}{article}{} + \name{author}{5}{}{% + {{un=0,uniquepart=base,hash=b240d4c2c38b76890194edc503159f6c}{% + family={Malkin}, + familyi={M\bibinitperiod}, + given={Robert}, + giveni={R\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=44d6d3bc808d706efa08427ab56376f8}{% + family={McDonagh}, + familyi={M\bibinitperiod}, + given={Thomas\bibnamedelima R}, + giveni={T\bibinitperiod\bibinitdelim R\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=ff2fe38db6e7c99c604d4228a8b9a61f}{% + family={Mhatre}, + familyi={M\bibinitperiod}, + given={Natasha}, + giveni={N\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=1557e6d49a7fd438c0b374fa1ff6f6e8}{% + family={Scott}, + familyi={S\bibinitperiod}, + given={Thomas\bibnamedelima S}, + giveni={T\bibinitperiod\bibinitdelim S\bibinitperiod}, + givenun=0}}% + {{un=0,uniquepart=base,hash=58c1cfb5606b005a98142f5a9b40a005}{% + family={Robert}, + familyi={R\bibinitperiod}, + given={Daniel}, + giveni={D\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{87390706a0ad1cad0e88c4db6d613103} + \strng{fullhash}{d7bc31a3f24102766ca6e162eb546896} + \strng{bibnamehash}{87390706a0ad1cad0e88c4db6d613103} + \strng{authorbibnamehash}{87390706a0ad1cad0e88c4db6d613103} + \strng{authornamehash}{87390706a0ad1cad0e88c4db6d613103} + \strng{authorfullhash}{d7bc31a3f24102766ca6e162eb546896} + \field{sortinit}{M} + \field{sortinithash}{4625c616857f13d17ce56f7d4f97d451} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{J R Soc Interface} + \field{title}{Energy localization and frequency analysis in the locust ear} + \field{volume}{11} + \field{year}{2014} + \field{pages}{20130857} + \range{pages}{1} + \endentry \entry{michelsen1971frequency}{article}{} \name{author}{1}{}{% {{un=0,uniquepart=base,hash=52cc9072f3abd1fbff88d8bd16788da4}{% @@ -188,11 +448,11 @@ giveni={J\bibinitperiod}, givenun=0}}% } - \strng{namehash}{a27866f5e08528bcf2314aa0ec6f0437} + \strng{namehash}{4db88d528409e3588c6107a876403384} \strng{fullhash}{a27866f5e08528bcf2314aa0ec6f0437} \strng{bibnamehash}{a27866f5e08528bcf2314aa0ec6f0437} \strng{authorbibnamehash}{a27866f5e08528bcf2314aa0ec6f0437} - \strng{authornamehash}{a27866f5e08528bcf2314aa0ec6f0437} + \strng{authornamehash}{4db88d528409e3588c6107a876403384} \strng{authorfullhash}{a27866f5e08528bcf2314aa0ec6f0437} \field{sortinit}{R} \field{sortinithash}{5e1c39a9d46ffb6bebd8f801023a9486} @@ -207,6 +467,34 @@ \field{pages}{61\bibrangedash 71} \range{pages}{11} \endentry + \entry{suga1960peripheral}{article}{} + \name{author}{1}{}{% + {{un=0,uniquepart=base,hash=cb8492490b7b1d1c021ccd740577eab6}{% + family={Suga}, + familyi={S\bibinitperiod}, + given={Nobuo}, + giveni={N\bibinitperiod}, + givenun=0}}% + } + \strng{namehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{fullhash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{bibnamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authorbibnamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authornamehash}{cb8492490b7b1d1c021ccd740577eab6} + \strng{authorfullhash}{cb8492490b7b1d1c021ccd740577eab6} + \field{sortinit}{S} + \field{sortinithash}{b164b07b29984b41daf1e85279fbc5ab} + \field{extradatescope}{labelyear} + \field{labeldatesource}{} + \field{labelnamesource}{author} + \field{labeltitlesource}{title} + \field{journaltitle}{Jpn J Physiol} + \field{title}{Peripheral mechanism of hearing in locust} + \field{volume}{10} + \field{year}{1960} + \field{pages}{533\bibrangedash 546} + \range{pages}{14} + \endentry \entry{windmill2008time}{article}{} \name{author}{3}{}{% {{un=0,uniquepart=base,hash=73f39430fed095cb0a958656d3b5edc5}{% @@ -228,11 +516,11 @@ giveni={D\bibinitperiod}, givenun=0}}% } - \strng{namehash}{ca16ceff115d806c7f5e88dd34a30486} + \strng{namehash}{0f334b7be5181e7160f03c1b68950c24} \strng{fullhash}{ca16ceff115d806c7f5e88dd34a30486} \strng{bibnamehash}{ca16ceff115d806c7f5e88dd34a30486} \strng{authorbibnamehash}{ca16ceff115d806c7f5e88dd34a30486} - \strng{authornamehash}{ca16ceff115d806c7f5e88dd34a30486} + \strng{authornamehash}{0f334b7be5181e7160f03c1b68950c24} \strng{authorfullhash}{ca16ceff115d806c7f5e88dd34a30486} \field{sortinit}{W} \field{sortinithash}{4315d78024d0cea9b57a0c6f0e35ed0d} diff --git a/main.bcf b/main.bcf index 6d41d80..87122b8 100644 --- a/main.bcf +++ b/main.bcf @@ -2368,8 +2368,14 @@ michelsen1971frequency windmill2008time malkin2014energy - clemens2011efficient - clemens2011efficient + machens2001discrimination + machens2001representation + suga1960peripheral + gollisch2002energy + fisch2012channel + clemens2010intensity + clemens2011efficient + clemens2011efficient diff --git a/main.blg b/main.blg deleted file mode 100644 index 0c71391..0000000 --- a/main.blg +++ /dev/null @@ -1,18 +0,0 @@ -[0] Config.pm:307> INFO - This is Biber 2.19 -[0] Config.pm:310> INFO - Logfile is 'main.blg' -[71] 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@@ -This is pdfTeX, Version 3.141592653-2.6-1.40.25 (TeX Live 2023/Debian) (preloaded format=pdflatex 2025.10.28) 5 DEC 2025 13:21 +This is pdfTeX, Version 3.141592653-2.6-1.40.25 (TeX Live 2023/Debian) (preloaded format=pdflatex 2025.10.28) 8 DEC 2025 16:39 entering extended mode restricted \write18 enabled. file:line:error style messages enabled. @@ -641,18 +641,13 @@ File: figures/fig_auditory_pathway.pdf Graphic file (type pdf) Package pdftex.def Info: figures/fig_auditory_pathway.pdf , page1 used on input line 56. (pdftex.def) Requested size: 455.24411pt x 378.38292pt. -) [2] -Overfull \hbox (23.79443pt too wide) in paragraph at lines 128--135 -\OT1/cmr/m/n/12 mem-brane ar-eas, while other fre-quen-cies are at-ten-u-ated ([]; []; - [] - - -Overfull \hbox (13.04964pt too wide) in paragraph at lines 148--150 +) [2] [3 <./figures/fig_auditory_pathway.pdf>] +Overfull \hbox (13.04964pt too wide) in paragraph at lines 170--172 []\OT1/cmr/m/n/12 Similar re-sponse/filter prop-er-ties within re-cep-tor/interneuron pop-u-la-tions ([]Clemens, Kutzki, [] -[3 <./figures/fig_auditory_pathway.pdf>] [4] -Overfull \hbox (9.43962pt too wide) in paragraph at lines 233--233 +[4] +Overfull \hbox (9.43962pt too wide) in paragraph at lines 246--246 []\OT1/cmr/bx/n/17.28 Two mech-a-nisms driv-ing the emer-gence of intensity- [] @@ -666,15 +661,15 @@ Package logreq Info: Writing requests to 'main.run.xml'. ) Here is how much of TeX's memory you used: - 17689 strings out of 474222 - 380227 string characters out of 5748732 - 1937975 words of memory out of 5000000 - 39723 multiletter control sequences out of 15000+600000 + 17701 strings out of 474222 + 380636 string characters out of 5748732 + 1936975 words of memory out of 5000000 + 39735 multiletter control sequences out of 15000+600000 566832 words of font info for 70 fonts, out of 8000000 for 9000 1141 hyphenation exceptions out of 8191 94i,19n,93p,713b,989s stack positions out of 10000i,1000n,20000p,200000b,200000s -Output written on main.pdf (8 pages, 1096448 bytes). +Output written on main.pdf (8 pages, 1097477 bytes). PDF statistics: 1080 PDF objects out of 1200 (max. 8388607) 685 compressed objects within 7 object streams diff --git a/main.pdf b/main.pdf index 7c71d8f..1ed35ac 100644 Binary files a/main.pdf and b/main.pdf differ diff --git a/main.synctex.gz b/main.synctex.gz index 1a301a0..dfb45a2 100644 Binary files a/main.synctex.gz and b/main.synctex.gz differ diff --git a/main.tex b/main.tex index 53f5b74..1a0f35a 100644 --- a/main.tex +++ b/main.tex @@ -126,18 +126,40 @@ $\rightarrow$ More general, simpler, unfitted formalized Gabor filter bank \subsection{Population-driven signal pre-processing} Grasshoppers receive airborne sound waves by a tympanal organ at each side of -the thorax. The tympanal membrane~(Fig.\,\ref{fig:pathway}) vibrates in -response to incoming sound waves in a frequency-dependent manner: Vibrations of -specific frequencies are focused on different membrane areas, while other -frequencies are attenuated~(\mbox{\cite{michelsen1971frequency}}; +the thorax~(Fig.\,\ref{fig:pathway}a). The tympanal membrane acts as a mechanical resonance filter: +Vibrations of specific frequencies are focused on different membrane areas, +while other frequencies are attenuated~(\mbox{\cite{michelsen1971frequency}}; \mbox{\cite{windmill2008time}}; \mbox{\cite{malkin2014energy}}). This -mechanical resonance filter can be modelled by an initial bandpass filter +processing step can be approximated by an initial bandpass filter \begin{equation} \filt(t)\,=\,\raw(t)\,*\,\bp, \qquad \fc\,=\,5\,\text{kHz},\,30\,\text{kHz} \label{eq:bandpass} \end{equation} -applied to the acoustic input signal $\raw(t)$. - +applied to the acoustic input signal $\raw(t)$. The auditory receptor neurons +connect directly to the tympanal membrane and transduce mechanical vibrations +into electro-chemical potentials. The receptor population is substrate to +several known signal processing steps. First, the receptors extract +the signal envelope~(\mbox{\cite{machens2001discrimination}}), which likely +involves a rectifying nonlinearity~(\mbox{\cite{machens2001representation}}). +This can be modelled as full-wave rectification followed by lowpass filtering +\begin{equation} + \env(t)\,=\,|\filt(t)|\,*\,\lp, \qquad \fc\,=\,500\,\text{Hz} + \label{eq:env} +\end{equation} +of the tympanal signal $\filt(t)$. Furthermore, the receptors exhibit a +sigmoidal response curve over logarithmically compressed intensity +levels~(\mbox{\cite{suga1960peripheral}}; \mbox{\cite{gollisch2002energy}}). In +the model, logarithmic compression is achieved by conversion to decibel scale +\begin{equation} + \db(t)\,=\,10\,\cdot\,\dec \frac{\env(t)}{\dbref}, \qquad \dbref\,=\,\max[\env(t)] + \label{eq:log} +\end{equation} +relative to the maximum intensity $\dbref$ of the signal envelope $\env(t)$. +Next, the axons of the receptor neurons project into the metathoracic ganglion, +where they synapse onto local interneurons~(Fig.\,\ref{fig:pathway}b). Both the +auditory receptors~(\mbox{\cite{fisch2012channel}}) and the subsequent +interneurons~(\mbox{\cite{clemens2010intensity}}) display spike-frequency +adaptation. @@ -154,22 +176,13 @@ Initial: Continuous acoustic input signal $x(t)$ Filtering of behaviorally relevant frequencies by tympanal membrane\\ $\rightarrow$ Bandpass filter 5-30 kHz + Extraction of signal envelope (AM encoding) by receptor population\\ $\rightarrow$ Full-wave rectification, then lowpass filter 500 Hz -% -\begin{equation} - \env(t)\,=\,|\filt(t)|\,*\,\lp, \qquad \fc\,=\,500\,\text{Hz} - \label{eq:env} -\end{equation} -% + Logarithmically compressed intensity tuning curve of receptors\\ $\rightarrow$ Decibel transformation -% -\begin{equation} - \db(t)\,=\,10\,\cdot\,\dec \frac{\env(t)}{\dbref}, \qquad \dbref\,=\,\max[\env(t)] - \label{eq:log} -\end{equation} -% + Spike-frequency adaptation in receptor and interneuron populations\\ $\rightarrow$ Highpass filter 10 Hz %