Differential representation of spectral and temporal information by primary auditory cortex neurons in awake cats: Relevance to auditory scene analysis

被引:5
|
作者
Sakai, Masashi [1 ]
Chimoto, Sohei [1 ]
Qin, Ling [1 ]
Sato, Yu [1 ]
机构
[1] Univ Yamanashi, Interdisciplinary Grad Sch Med & Engn, Dept Physiol, Yamanashi 4063898, Japan
关键词
Auditory cortex; Neuron; Temporal coding; Synchronization; Adaptation; COMODULATION MASKING RELEASE; SINGLE-UNIT ACTIVITY; STREAM SEGREGATION; EVOKED OSCILLATIONS; RESPONSE PROPERTIES; CORTICAL-NEURONS; SQUIRREL-MONKEY; MACAQUE MONKEY; NOISE STIMULI; COMBINED TONE;
D O I
10.1016/j.brainres.2009.01.064
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We investigated how the primary auditory cortex (AI) neurons encode the two major requisites for auditory scene analysis, i.e., spectral and temporal information. Single-unit activities in awake cats AI were studied by presenting 0.5-s-long tone bursts and click trains. First of all, the neurons (n = 92) were classified into 3 types based on the time-course of excitatory responses to tone bursts: 1) phasic cells (P-cells; 26%), giving only transient responses; 2) tonic cells (T-cells; 34%), giving sustained responses with little or no adaptation; and 3) phasic-tonic cells (PT-cells; 40%), giving sustained responses with some tendency of adaptation. Other tone-response variables differed among cell types. For example, P-cells showed the shortest latency and smallest spiking jitter while T-cells had the sharpest frequency tuning. PT-cells generally fell in the intermediate between the two extremes. Click trains also revealed between-neuron- type differences for the emergent probability of excitatory responses (P-cells > PT-cells > T-cells) and their temporal features. For example, a substantial fraction of P-cells conducted stimulus-locking responses, but none of the T-cells did. f(r)-dependency characteristics of the stimulus locking resembled that reported for "comodulation masking release," a behavioral model of auditory scene analysis. Each type neurons were omnipresent throughout the AI and none of them showed intrinsic oscillation. These findings suggest that: 1) T-cells preferentially encode spectral information with a rate-place code and 2) P-cells preferentially encode acoustic transients with a temporal code whereby rate-place coded information is potentially bound for scene analysis. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:80 / 92
页数:13
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