Optimal neural population coding of an auditory spatial cue
Top Cited Papers
- 1 August 2004
- journal article
- Published by Springer Nature in Nature
- Vol. 430 (7000) , 682-686
- https://doi.org/10.1038/nature02768
Abstract
A sound, depending on the position of its source, can take more time to reach one ear than the other. This interaural (between the ears) time difference (ITD) provides a major cue for determining the source location. Many auditory neurons are sensitive to ITDs, but the means by which such neurons represent ITD is a contentious issue. Recent studies question whether the classical general model (the Jeffress model) applies across species. Here we show that ITD coding strategies of different species can be explained by a unifying principle: that the ITDs an animal naturally encounters should be coded with maximal accuracy. Using statistical techniques and a stochastic neural model, we demonstrate that the optimal coding strategy for ITD depends critically on head size and sound frequency. For small head sizes and/or low-frequency sounds, the optimal coding strategy tends towards two distinct sub-populations tuned to ITDs outside the range created by the head. This is consistent with recent observations in small mammals. For large head sizes and/or high frequencies, the optimal strategy is a homogeneous distribution of ITD tunings within the range created by the head. This is consistent with observations in the barn owl. For humans, the optimal strategy to code ITDs from an acoustically measured distribution depends on frequency; above 400 Hz a homogeneous distribution is optimal, and below 400 Hz distinct sub-populations are optimal.Keywords
This publication has 26 references indexed in Scilit:
- Precise inhibition is essential for microsecond interaural time difference codingNature, 2002
- A neural code for low-frequency sound localization in mammalsNature Neuroscience, 2001
- Coincidence Detection in the Auditory SystemNeuron, 1998
- The dominant role of low-frequency interaural time differences in sound localizationThe Journal of the Acoustical Society of America, 1992
- Interaural time sensitivity in medial superior olive of catJournal of Neurophysiology, 1990
- Representation of interaural time difference in the central nucleus of the barn owl's inferior colliculusJournal of Neuroscience, 1987
- Selectivity for interaural time difference in the owl's midbrainJournal of Neuroscience, 1986
- Detectability of interaural delay in high-frequency complex waveformsThe Journal of the Acoustical Society of America, 1974
- A place theory of sound localization.Journal of Comparative and Physiological Psychology, 1948
- XII. On our perception of sound directionJournal of Computers in Education, 1907