Literature DB >> 12938765

Neurodynamics for auditory stream segregation: tracking sounds in the mustached bat's natural environment.

Jagmeet S Kanwal1, Andrei V Medvedev, Christophe Micheyl.   

Abstract

During navigation and the search phase of foraging, mustached bats emit approximately 25 ms long echolocation pulses (at 10-40 Hz) that contain multiple harmonics of a constant frequency (CF) component followed by a short (3 ms) downward frequency modulation. In the context of auditory stream segregation, therefore, bats may either perceive a coherent pulse-echo sequence (PEPE...), or segregated pulse and echo streams (P-P-P... and E-E-E...). To identify the neural mechanisms for stream segregation in bats, we developed a simple yet realistic neural network model with seven layers and 420 nodes. Our model required recurrent and lateral inhibition to enable output nodes in the network to 'latch-on' to a single tone (corresponding to a CF component in either the pulse or echo), i.e., exhibit differential suppression by the alternating two tones presented at a high rate (> 10 Hz). To test the applicability of our model to echolocation, we obtained neurophysiological data from the primary auditory cortex of awake mustached bats. Event-related potentials reliably reproduced the latching behaviour observed at output nodes in the network. Pulse as well as nontarget (clutter) echo CFs facilitated this latching. Individual single unit responses were erratic, but when summed over several recording sites, they also exhibited reliable latching behaviour even at 40 Hz. On the basis of these findings, we propose that a neural correlate of auditory stream segregation is present within localized synaptic activity in the mustached bat's auditory cortex and this mechanism may enhance the perception of echolocation sounds in the natural environment.

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Year:  2003        PMID: 12938765

Source DB:  PubMed          Journal:  Network        ISSN: 0954-898X            Impact factor:   1.273


  25 in total

Review 1.  Behind the scenes of auditory perception.

Authors:  Shihab A Shamma; Christophe Micheyl
Journal:  Curr Opin Neurobiol       Date:  2010-04-22       Impact factor: 6.627

2.  Objective and subjective psychophysical measures of auditory stream integration and segregation.

Authors:  Christophe Micheyl; Andrew J Oxenham
Journal:  J Assoc Res Otolaryngol       Date:  2010-07-24

3.  Neuromagnetic correlates of streaming in human auditory cortex.

Authors:  Alexander Gutschalk; Christophe Micheyl; Jennifer R Melcher; André Rupp; Michael Scherg; Andrew J Oxenham
Journal:  J Neurosci       Date:  2005-06-01       Impact factor: 6.167

4.  Cortical FMRI activation to sequences of tones alternating in frequency: relationship to perceived rate and streaming.

Authors:  E Courtenay Wilson; Jennifer R Melcher; Christophe Micheyl; Alexander Gutschalk; Andrew J Oxenham
Journal:  J Neurophysiol       Date:  2007-01-03       Impact factor: 2.714

5.  A cocktail party with a cortical twist: how cortical mechanisms contribute to sound segregation.

Authors:  Mounya Elhilali; Shihab A Shamma
Journal:  J Acoust Soc Am       Date:  2008-12       Impact factor: 1.840

6.  Echo-acoustic flow shapes object representation in spatially complex acoustic scenes.

Authors:  Wolfgang Greiter; Uwe Firzlaff
Journal:  J Neurophysiol       Date:  2017-03-08       Impact factor: 2.714

Review 7.  Animal models for auditory streaming.

Authors:  Naoya Itatani; Georg M Klump
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2017-01-02       Impact factor: 6.237

8.  Grouping in auditory temporal perception and vocal production is mutually adapted: the case of wriggling calls of mice.

Authors:  Simone Gaub; Günter Ehret
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2005-08-02       Impact factor: 1.836

9.  Temporal coherence in the perceptual organization and cortical representation of auditory scenes.

Authors:  Mounya Elhilali; Ling Ma; Christophe Micheyl; Andrew J Oxenham; Shihab A Shamma
Journal:  Neuron       Date:  2009-01-29       Impact factor: 17.173

10.  Neurophysiological mechanisms involved in auditory perceptual organization.

Authors:  Aurelie Bidet-Caulet; Olivier Bertrand
Journal:  Front Neurosci       Date:  2009-09-15       Impact factor: 4.677

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