Literature DB >> 11746435

Auditory processing of interaural timing information: new insights.

L R Bernstein1.   

Abstract

Differences in the time-of-arrival of sounds at the two ears, or interaural temporal disparities (ITDs), constitute one of the major binaural cues that underlie our ability to localize sounds in space. In addition, ITDs contribute to our ability to detect and to discriminate sounds, such as speech, in noisy environments. For low-frequency signals, ITDs are conveyed primarily by "cycle-by-cycle" disparities present in the fine-structure of the waveform. For high-frequency signals, ITDs are conveyed by disparities within the time-varying amplitude, or envelope, of the waveform. The results of laboratory studies conducted over the past few decades indicate that ITDs within the envelopes of high-frequency are less potent than those within the fine-structure of low-frequency stimuli. This is true for both measures of sensitivity to changes in ITD and for measures of the extent of the perceived lateral displacement of sounds containing ITDs. Colburn and Esquissaud (1976) hypothesized that it is differences in the specific aspects of the waveform that are coded neurally within each monaural (single ear) channel that account for the greater potency of ITDs at low frequencies rather than any differences in the more central binaural mechanisms that serve these different frequency regions. In this review, the results of new studies are reported that employed special high-frequency "transposed" stimuli that were designed to provide the high-frequency channels of the binaural processor with envelope-based information that mimics waveform-based information normally available only in low-frequency channels. The results demonstrate that these high-frequency transposed stimuli (1) yield sensitivity to ITDs that approaches, or is equivalent to, that obtained with "conventional" low-frequency stimuli and (2) yield large extents of laterality that are similar to those measured with conventional low-frequency stimuli. These findings suggest that by providing the high-frequency channels of the binaural processor with information that mimics that normally available only at low frequencies, the potency of ITDs in the two frequency regions can be made to be similar, if not identical. These outcomes provide strong support for Colburn and Esquissaud's (1976) hypothesis. The use of high-frequency transposed stimuli, in both behavioral and physiological investigations offers the promise of new and important insights into the nature of binaural processing. Copyright 2001 Wiley-Liss, Inc.

Mesh:

Year:  2001        PMID: 11746435     DOI: 10.1002/jnr.10103

Source DB:  PubMed          Journal:  J Neurosci Res        ISSN: 0360-4012            Impact factor:   4.164


  33 in total

1.  Studies on bilateral cochlear implants at the University of Wisconsin's Binaural Hearing and Speech Laboratory.

Authors:  Ruth Y Litovsky; Matthew J Goupell; Shelly Godar; Tina Grieco-Calub; Gary L Jones; Soha N Garadat; Smita Agrawal; Alan Kan; Ann Todd; Christi Hess; Sara Misurelli
Journal:  J Am Acad Audiol       Date:  2012-06       Impact factor: 1.664

2.  Topographic organization is essential for pitch perception.

Authors:  Shihab A Shamma
Journal:  Proc Natl Acad Sci U S A       Date:  2004-01-26       Impact factor: 11.205

3.  Correct tonotopic representation is necessary for complex pitch perception.

Authors:  Andrew J Oxenham; Joshua G W Bernstein; Hector Penagos
Journal:  Proc Natl Acad Sci U S A       Date:  2004-01-12       Impact factor: 11.205

4.  Phase locking of auditory-nerve fibers to the envelopes of high-frequency sounds: implications for sound localization.

Authors:  Anna Dreyer; Bertrand Delgutte
Journal:  J Neurophysiol       Date:  2006-06-28       Impact factor: 2.714

5.  Binaural sensitivity in children who use bilateral cochlear implants.

Authors:  Erica Ehlers; Matthew J Goupell; Yi Zheng; Shelly P Godar; Ruth Y Litovsky
Journal:  J Acoust Soc Am       Date:  2017-06       Impact factor: 1.840

6.  Binaural hearing in children using Gaussian enveloped and transposed tones.

Authors:  Erica Ehlers; Alan Kan; Matthew B Winn; Corey Stoelb; Ruth Y Litovsky
Journal:  J Acoust Soc Am       Date:  2016-04       Impact factor: 1.840

7.  Underwater Acoustic Source Localisation Among Blind and Sighted Scuba Divers: Comparative study.

Authors:  Jacopo Cambi; Ludovica Livi; Walter Livi
Journal:  Sultan Qaboos Univ Med J       Date:  2017-06-20

8.  [Speech audiometric assessment of informational masking. German version].

Authors:  S Rählmann; H Meister
Journal:  HNO       Date:  2017-03       Impact factor: 1.284

9.  Speech audiometric assessment of informational masking.

Authors:  S Rählmann; H Meister
Journal:  HNO       Date:  2017-08       Impact factor: 1.284

10.  Effect of age at onset of deafness on binaural sensitivity in electric hearing in humans.

Authors:  Ruth Y Litovsky; Gary L Jones; Smita Agrawal; Richard van Hoesel
Journal:  J Acoust Soc Am       Date:  2010-01       Impact factor: 1.840

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