Correlation Between the Activity of Single Auditory Cortical Neurons and Sound-Localization Behavior in the Macaque Monkey
- 1 May 2000
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 83 (5) , 2723-2739
- https://doi.org/10.1152/jn.2000.83.5.2723
Abstract
Lesion studies have indicated that the auditory cortex is crucial for the perception of acoustic space, yet it remains unclear how these neurons participate in this perception. To investigate this, we studied the responses of single neurons in the primary auditory cortex (AI) and the caudomedial field (CM) of two monkeys while they performed a sound-localization task. Regression analysis indicated that the responses of ∼80% of neurons in both cortical areas were significantly correlated with the azimuth or elevation of the stimulus, or both, which we term “spatially sensitive.” The proportion of spatially sensitive neurons was greater for stimulus azimuth compared with stimulus elevation, and elevation sensitivity was primarily restricted to neurons that were tested using stimuli that the monkeys also could localize in elevation. Most neurons responded best to contralateral speaker locations, but we also encountered neurons that responded best to ipsilateral locations and neurons that had their greatest responses restricted to a circumscribed region within the central 60° of frontal space. Comparing the spatially sensitive neurons with those that were not spatially sensitive indicated that these two populations could not be distinguished based on either the firing rate, the rate/level functions, or on their topographic location within AI. Direct comparisons between the responses of individual neurons and the behaviorally measured sound-localization ability indicated that proportionally more neurons in CM had spatial sensitivity that was consistent with the behavioral performance compared with AI neurons. Pooling the responses across neurons strengthened the relationship between the neuronal and psychophysical data and indicated that the responses pooled across relatively few CM neurons contain enough information to account for sound-localization ability. These data support the hypothesis that auditory space is processed in a serial manner from AI to CM in the primate cerebral cortex.Keywords
This publication has 73 references indexed in Scilit:
- Modality-specific frontal and parietal areas for auditory and visual spatial localization in humansNature Neuroscience, 1999
- The Structure of Spatial Receptive Fields of Neurons in Primary Auditory Cortex of the CatJournal of Neuroscience, 1996
- Cortical synthesis of azimuth-sensitive single-unit responses with nonmonotonic level tuning: a thalamocortical comparison in the catJournal of Neurophysiology, 1996
- The analysis of visual motion: a comparison of neuronal and psychophysical performanceJournal of Neuroscience, 1992
- Encoding of sound-source location and movement: activity of single neurons and interactions between adjacent neurons in the monkey auditory cortexJournal of Neurophysiology, 1992
- The bandwidth effect on monaural and binaural localizationHearing Research, 1986
- Vertical and horizontal sound localization in primatesThe Journal of the Acoustical Society of America, 1982
- Single-unit activity in the auditory cortex of monkeys actively localizing sound sources: Spatial tuning and behavioral dependencyBrain Research, 1981
- Localization of noise bands by Old World monkeysThe Journal of the Acoustical Society of America, 1980
- Localization of Primate Calls by Old World MonkeysScience, 1978