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大鼠桶状皮层神经元对不同触须刺激反应中方向调谐的相似性。

Similarity of direction tuning among responses to stimulation of different whiskers in neurons of rat barrel cortex.

作者信息

Kida Hiroyuki, Shimegi Satoshi, Sato Hiromichi

机构信息

Laboratory of Cognitive and Behavioral Neuroscience, Graduate School of Medicine, Osaka University, Machikaneyama 1-17, Toyonaka, Osaka 560-0043, Japan.

出版信息

J Neurophysiol. 2005 Sep;94(3):2004-18. doi: 10.1152/jn.00113.2004. Epub 2005 Jun 22.

Abstract

Cells in the rat barrel cortex exhibit stimulus-specific response properties. To understand the network mechanism of direction selectivity in response to facial whisker deflection, we examined direction selectivity of neuronal responses to single- and multi-whisker stimulations. In the case of regular-spiking units, i.e., putative excitatory cells, direction preferences were quite similar between responses to single-whisker stimulation of the principal and adjacent whiskers. In multi-whisker stimulation at short (< or = 5 ms) interstimulus intervals (ISIs), response facilitation was evoked only when the whiskers were deflected to the preferred direction of the response to the single whisker stimulation. These results suggest that there are neuronal networks among cells with different whisker preferences but with a common direction preference that could be the neuronal basis of the direction-selective facilitation of the response to multi-whisker stimulation. In contrast, multi-whisker stimulation at long (> or = 6 ms) ISIs caused non-direction-selective suppression of the response to the second stimulus. In the case of fast-spiking units, i.e., putative inhibitory cells, poor direction selectivity was exhibited. Thus stimulus direction is represented as the direction-selective responses to the single- and multi-whisker stimulations of putative excitatory cells rather than those of putative inhibitory cells.

摘要

大鼠桶状皮层中的细胞表现出刺激特异性反应特性。为了理解对面部触须偏转产生方向选择性的网络机制,我们研究了神经元对单触须和多触须刺激反应的方向选择性。对于规则发放神经元,即假定的兴奋性细胞,对主要触须和相邻触须的单触须刺激反应之间的方向偏好非常相似。在短(≤5毫秒)刺激间隔(ISI)的多触须刺激中,只有当触须偏向单触须刺激反应的偏好方向时,才会诱发反应易化。这些结果表明,在具有不同触须偏好但有共同方向偏好的细胞之间存在神经元网络,这可能是对多触须刺激反应的方向选择性易化的神经元基础。相反,长(≥6毫秒)ISI的多触须刺激会导致对第二个刺激反应的非方向选择性抑制。对于快速发放神经元,即假定的抑制性细胞,方向选择性较差。因此,刺激方向表现为假定的兴奋性细胞而非假定的抑制性细胞对单触须和多触须刺激的方向选择性反应。

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