Creating a sense of auditory space
Determining the location of a sound source requires the use of binaural hearing â information about a sound at the two ears converges onto neurones in the auditory brainstem to create a binaural representation. The main binaural cue used by many mammals to locate a sound source is the interaural t...
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Veröffentlicht in: | The Journal of physiology 2005-07, Vol.566 (1), p.21-28 |
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Sprache: | eng |
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Zusammenfassung: | Determining the location of a sound source requires the use of binaural hearing â information about a sound at the two ears
converges onto neurones in the auditory brainstem to create a binaural representation. The main binaural cue used by many
mammals to locate a sound source is the interaural time difference, or ITD. For over 50 years a single model has dominated
thinking on how ITDs are processed. The Jeffress model consists of an array of coincidence detectors â binaural neurones that
respond maximally to simultaneous input from each ear â innervated by a series of delay lines â axons of varying length from
the two ears. The purpose of this arrangement is to create a topographic map of ITD, and hence spatial position in the horizontal
plane, from the relative timing of a sound at the two ears. This model appears to be realized in the brain of the barn owl,
an auditory specialist, and has been assumed to hold for mammals also. Recent investigations, however, indicate that both
the means by which neural tuning for preferred ITD, and the coding strategy used by mammals to determine the location of a
sound source, may be very different to barn owls and to the model proposed by Jeffress. |
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ISSN: | 0022-3751 1469-7793 |
DOI: | 10.1113/jphysiol.2005.083113 |