Polished most of 2 new methods figures.
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36
main.aux
36
main.aux
@@ -44,6 +44,8 @@
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\abx@aux@page{4}{1}
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\abx@aux@page{6}{1}
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\abx@aux@page{7}{1}
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\abx@aux@page{8}{1}
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\abx@aux@cite{0}{helversen1977stridulatory}
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\abx@aux@segm{0}{0}{helversen1977stridulatory}
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\abx@aux@cite{0}{stumpner1994song}
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@@ -94,8 +96,6 @@
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\abx@aux@segm{0}{0}{clemens2010intensity}
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\abx@aux@cite{0}{hildebrandt2009origin}
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\abx@aux@segm{0}{0}{hildebrandt2009origin}
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\abx@aux@page{7}{2}
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\abx@aux@page{8}{2}
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\abx@aux@page{9}{2}
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\abx@aux@page{10}{2}
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\abx@aux@page{11}{2}
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@@ -116,6 +116,8 @@
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\abx@aux@page{26}{2}
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\abx@aux@page{27}{2}
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\abx@aux@page{28}{2}
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\abx@aux@page{29}{2}
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\abx@aux@page{30}{2}
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\abx@aux@cite{0}{clemens2013computational}
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\abx@aux@segm{0}{0}{clemens2013computational}
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\abx@aux@cite{0}{hennig2014time}
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@@ -134,8 +136,6 @@
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\abx@aux@segm{0}{0}{clemens2011efficient}
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\abx@aux@cite{0}{clemens2012nonlinear}
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\abx@aux@segm{0}{0}{clemens2012nonlinear}
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\abx@aux@page{29}{3}
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\abx@aux@page{30}{3}
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\abx@aux@page{31}{3}
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\abx@aux@page{32}{3}
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\abx@aux@page{33}{3}
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@@ -172,11 +172,15 @@
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\abx@aux@page{48}{4}
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\abx@aux@page{49}{4}
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\abx@aux@page{50}{4}
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\@writefile{toc}{\contentsline {section}{\numberline {2}Developing a functional model of the\\grasshopper song recognition pathway}{4}{}\protected@file@percent }
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\abx@aux@cite{0}{windmill2008time}
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\abx@aux@segm{0}{0}{windmill2008time}
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\abx@aux@cite{0}{malkin2014energy}
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\abx@aux@segm{0}{0}{malkin2014energy}
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\@writefile{toc}{\contentsline {section}{\numberline {2}Developing a functional model of the\\grasshopper song recognition pathway}{5}{}\protected@file@percent }
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\abx@aux@cite{0}{machens2001discrimination}
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\abx@aux@segm{0}{0}{machens2001discrimination}
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\abx@aux@cite{0}{machens2001representation}
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\abx@aux@segm{0}{0}{machens2001representation}
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\abx@aux@page{51}{5}
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\abx@aux@page{52}{5}
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\abx@aux@page{53}{5}
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@@ -188,13 +192,12 @@
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\@writefile{toc}{\contentsline {subsection}{\numberline {2.1}Population-driven signal preprocessing}{5}{}\protected@file@percent }
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\abx@aux@page{59}{5}
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\abx@aux@page{60}{5}
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\newlabel{eq:bandpass}{{1}{5}{}{}{}}
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\abx@aux@page{61}{5}
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\abx@aux@page{62}{5}
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\@writefile{lof}{\contentsline {figure}{\numberline {1}{\ignorespaces \textbf {Schematic organisation of the song recognition pathway in grasshoppers compared to the structure of the functional model pathway.} \textbf {a}:~Simplified course of the pathway in the grasshopper, from the tympanal membrane over receptor neurons, local interneurons, and ascending neurons further towards the supraesophageal ganglion. \textbf {b}:~Schematic of synaptic connections between the three neuronal populations within the metathoracic ganglion. \textbf {c}:~Network representation of neuronal connectivity. \textbf {d}:~Flow diagram of the different signal representations and transformations along the model pathway. All representations are time-varying. 1st half: Preprocessing stage (one-dimensional). 2nd half: Feature extraction stage (high-dimensional). }}{6}{}\protected@file@percent }
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\providecommand*\caption@xref[2]{\@setref\relax\@undefined{#1}}
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\newlabel{fig:pathway}{{1}{6}{}{}{}}
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\abx@aux@cite{0}{machens2001discrimination}
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\abx@aux@segm{0}{0}{machens2001discrimination}
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\abx@aux@cite{0}{machens2001representation}
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\abx@aux@segm{0}{0}{machens2001representation}
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\abx@aux@cite{0}{suga1960peripheral}
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\abx@aux@segm{0}{0}{suga1960peripheral}
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\abx@aux@cite{0}{gollisch2002energy}
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@@ -209,9 +212,6 @@
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\abx@aux@segm{0}{0}{hildebrandt2009origin}
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\abx@aux@cite{0}{clemens2010intensity}
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\abx@aux@segm{0}{0}{clemens2010intensity}
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\newlabel{eq:bandpass}{{1}{7}{}{}{}}
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\abx@aux@page{61}{7}
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\abx@aux@page{62}{7}
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\newlabel{eq:env}{{2}{7}{}{}{}}
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\abx@aux@page{63}{7}
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\abx@aux@page{64}{7}
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@@ -222,8 +222,8 @@
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\abx@aux@page{68}{7}
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\abx@aux@page{69}{7}
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\newlabel{eq:highpass}{{4}{7}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {2}{\ignorespaces \relax }}{8}{}\protected@file@percent }
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\newlabel{fig:pre}{{2}{8}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {2}{\ignorespaces \textbf {Representations of a song of \textit {O. rufipes} during the preprocessing stage.} \textbf {a}:~Bandpass-filtered tympanal signal. \textbf {b}:~Signal envelope. \textbf {c}:~Logarithmically scaled envelope. \textbf {d}:~Intensity-adapted envelope. }}{7}{}\protected@file@percent }
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\newlabel{fig:pre}{{2}{7}{}{}{}}
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\@writefile{toc}{\contentsline {subsection}{\numberline {2.2}Feature extraction by individual neurons}{8}{}\protected@file@percent }
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\newlabel{eq:conv}{{5}{8}{}{}{}}
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\newlabel{eq:gabor}{{6}{8}{}{}{}}
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@@ -239,12 +239,12 @@
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\abx@aux@page{70}{9}
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\abx@aux@page{71}{9}
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\abx@aux@page{72}{9}
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\newlabel{eq:lowpass}{{10}{10}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {3}{\ignorespaces \relax }}{10}{}\protected@file@percent }
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\newlabel{eq:lowpass}{{10}{9}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {3}{\ignorespaces \textbf {Representations of a song of \textit {O. rufipes} during the feature extraction stage.} \textbf {a}:~Kernel-specific filter responses. \textbf {b}:~Binary responses. \textbf {c}:~Finalized features. }}{10}{}\protected@file@percent }
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\newlabel{fig:stages_feat}{{3}{10}{}{}{}}
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\@writefile{toc}{\contentsline {section}{\numberline {3}Two mechanisms driving the emergence of intensity-invariant song representation}{10}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsection}{\numberline {3.1}Logarithmic scaling \& spike-frequency adaptation}{10}{}\protected@file@percent }
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\newlabel{eq:toy_env}{{11}{11}{}{}{}}
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\newlabel{eq:toy_env}{{11}{10}{}{}{}}
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\newlabel{eq:toy_snr}{{12}{11}{}{}{}}
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\newlabel{eq:toy_log}{{13}{11}{}{}{}}
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\newlabel{eq:toy_highpass}{{14}{11}{}{}{}}
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@@ -252,7 +252,7 @@
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\newlabel{eq:pdf_split}{{15}{12}{}{}{}}
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\newlabel{eq:pdf}{{16}{12}{}{}{}}
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\newlabel{eq:feat_avg}{{17}{12}{}{}{}}
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\newlabel{eq:feat_prop}{{18}{13}{}{}{}}
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\newlabel{eq:feat_prop}{{18}{12}{}{}{}}
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\abx@aux@cite{0}{stumpner1991auditory}
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\abx@aux@segm{0}{0}{stumpner1991auditory}
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\@writefile{toc}{\contentsline {section}{\numberline {4}Discriminating species-specific song\\patterns in feature space}{14}{}\protected@file@percent }
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