Literature DB >> 25834060

Auditory distance coding in rabbit midbrain neurons and human perception: monaural amplitude modulation depth as a cue.

Duck O Kim1, Pavel Zahorik2, Laurel H Carney3, Brian B Bishop4, Shigeyuki Kuwada4.   

Abstract

Mechanisms underlying sound source distance localization are not well understood. Here we tested the hypothesis that a novel mechanism can create monaural distance sensitivity: a combination of auditory midbrain neurons' sensitivity to amplitude modulation (AM) depth and distance-dependent loss of AM in reverberation. We used virtual auditory space (VAS) methods for sounds at various distances in anechoic and reverberant environments. Stimulus level was constant across distance. With increasing modulation depth, some rabbit inferior colliculus neurons increased firing rates whereas others decreased. These neurons exhibited monotonic relationships between firing rates and distance for monaurally presented noise when two conditions were met: (1) the sound had AM, and (2) the environment was reverberant. The firing rates as a function of distance remained approximately constant without AM in either environment and, in an anechoic condition, even with AM. We corroborated this finding by reproducing the distance sensitivity using a neural model. We also conducted a human psychophysical study using similar methods. Normal-hearing listeners reported perceived distance in response to monaural 1 octave 4 kHz noise source sounds presented at distances of 35-200 cm. We found parallels between the rabbit neural and human responses. In both, sound distance could be discriminated only if the monaural sound in reverberation had AM. These observations support the hypothesis. When other cues are available (e.g., in binaural hearing), how much the auditory system actually uses the AM as a distance cue remains to be determined.
Copyright © 2015 the authors 0270-6474/15/355360-13$15.00/0.

Entities:  

Keywords:  amplitude; localization; looming; modulation; personal space; sound

Mesh:

Year:  2015        PMID: 25834060      PMCID: PMC4381006          DOI: 10.1523/JNEUROSCI.3798-14.2015

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  49 in total

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8.  Amplitude modulation detection by human listeners in reverberant sound fields: Carrier bandwidth effects and binaural versus monaural comparison.

Authors:  Pavel Zahorik; Duck O Kim; Shigeyuki Kuwada; Paul W Anderson; Eugene Brandewie; Regina Collecchia; Nirmal Srinivasan
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  14 in total

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Authors:  Duck O Kim; Laurel Carney; Shigeyuki Kuwada
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5.  Neural fluctuation cues for simultaneous notched-noise masking and profile-analysis tasks: Insights from model midbrain responses.

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6.  Speech Coding in the Midbrain: Effects of Sensorineural Hearing Loss.

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8.  Cortical adaptation to sound reverberation.

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Review 9.  Supra-Threshold Hearing and Fluctuation Profiles: Implications for Sensorineural and Hidden Hearing Loss.

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Journal:  J Assoc Res Otolaryngol       Date:  2018-05-09

10.  Midbrain-Level Neural Correlates of Behavioral Tone-in-Noise Detection: Dependence on Energy and Envelope Cues.

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