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Human cortical processing of interaural coherence

Robert Luke*, Hamish Innes-Brown, Jaime A. Undurraga, David McAlpine

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

Sounds reach the ears as a mixture of energy generated by different sources. Listeners extract cues that distinguish different sources from one another, including how similar sounds arrive at the two ears, the interaural coherence (IAC). Here, we find listeners cannot reliably distinguish two completely interaurally coherent sounds from a single sound with reduced IAC. Pairs of sounds heard toward the front were readily confused with single sounds with high IAC, whereas those heard to the sides were confused with single sounds with low IAC. Sounds that hold supra-ethological spatial cues are perceived as more diffuse than can be accounted for by their IAC, and this is accounted for by a computational model comprising a restricted, and sound-frequency dependent, distribution of auditory-spatial detectors. We observed elevated cortical hemodynamic responses for sounds with low IAC, suggesting that the ambiguity elicited by sounds with low interaural similarity imposes elevated cortical load.

Original languageEnglish
Article number104181
Pages (from-to)1-17
Number of pages17
JournaliScience
Volume25
Issue number5
DOIs
Publication statusPublished - 20 May 2022

Bibliographical note

Copyright the Author(s) 2022. Version archived for private and non-commercial use with the permission of the author/s and according to publisher conditions. For further rights please contact the publisher.

Keywords

  • biological sciences
  • neuroscience
  • sensory neuroscience

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  • How the brain creates a sense of auditory space

    McAlpine, D. (Primary Chief Investigator), Undurraga Lucero, J. (Primary Chief Investigator), PhD Contribution (ARC), P. C. (Student), PhD Contribution 2 (ARC), P. C. 2. (Student), MQRES, M. (Student) & MQRES 2, M. 2. (Student)

    1/10/1628/06/30

    Project: Research

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