Spectrotemporal receptive fields during spindling and non-spindling epochs in cat primary auditory cortex

被引:10
|
作者
Britvina, T. [1 ]
Eggermonti, J. J. [1 ,2 ]
机构
[1] Univ Calgary, Dept Phys & Biophys, Calgary, AB, Canada
[2] Univ Calgary, Dept Psychol, Calgary, AB T2N 1N4, Canada
关键词
local field potentials; multi-unit; ketamine; spindling; spectro-temporal receptive fields; auditory cortex;
D O I
10.1016/j.neuroscience.2008.04.035
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
It was often thought that synchronized rhythmic epochs of spindle waves disconnect thalamo-cortical system from incoming sensory signals. The present study addresses this issue by simultaneous extracellular action potential and local field potential (LFP) recordings from primary auditory cortex of ketamine-anesthetized cats during spindling activity. We compared cortical spectrotemporal receptive fields (STRF) obtained during spindling and non-spindling epochs. The basic spectro-temporal parameters of "spindling" and "non-spindling" STRFs were similar. However, the peak-firing rate at the best frequency was significantly enhanced during spindling epochs. This enhancement was mainly caused by the increased probability of a stimulus to evoke spikes (effectiveness of stimuli) during spindling as compared with non-spindling epochs. Augmented LFPs associated with effective stimuli and increased single-unit pair correlations during spindling epochs suggested higher synchrony of thalamo-cortical inputs during spindling that resulted in increased effectiveness of stimuli presented during spindling activity. The neuronal firing rate, both stimulus-driven and spontaneous, was higher during spindling as compared with non-spindling epochs. Overall, our results suggests that thalamic cells during spindling respond to incoming stimuli-related inputs and, moreover, cause more powerful stimulus-related or spontaneous activation of the cortex. (C) 2008 IBRO. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:1576 / 1588
页数:13
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