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啮齿动物体感皮层IV层桶状结构的功能独立性

Functional independence of layer IV barrels in rodent somatosensory cortex.

作者信息

Goldreich D, Kyriazi H T, Simons D J

机构信息

Department of Neurobiology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.

出版信息

J Neurophysiol. 1999 Sep;82(3):1311-6. doi: 10.1152/jn.1999.82.3.1311.

Abstract

Layer IV of rodent primary somatosensory cortex is characterized by an array of whisker-related groups of neurons, known as "barrels." Neurons within each barrel respond best to a particular whisker on the contralateral face, and, on deflection of adjacent whiskers, display relatively weak excitation followed by strong inhibition. A prominent hypothesis for the processing of vibrissal information within layer IV is that the multiwhisker receptive fields of barrel neurons reflect interconnections among neighboring barrels. An alternative view is that the receptive field properties of barrel neurons are derived from operations performed on multiwhisker, thalamic inputs by local circuitry within each barrel, independently of neighboring barrels. Here we report that adjacent whisker-evoked excitation and inhibition within a barrel are unaffected by ablation of the corresponding adjacent barrel. In supragranular neurons, on the other hand, excitatory responses to the ablated barrel's associated whisker are substantially reduced. We conclude that the layer IV barrels function as an array of independent parallel processors, each of which individually transforms thalamic afferent input for subsequent processing by horizontally interconnected circuits in other layers.

摘要

啮齿动物初级体感皮层的第IV层以一系列与触须相关的神经元群为特征,这些神经元群被称为“桶状结构”。每个桶状结构内的神经元对同侧面部的特定触须反应最佳,并且,当相邻触须发生偏转时,它们会先表现出相对较弱的兴奋,随后是强烈的抑制。关于第IV层内触须信息处理的一个重要假说是,桶状神经元的多触须感受野反映了相邻桶状结构之间的相互连接。另一种观点是,桶状神经元的感受野特性源自每个桶状结构内的局部神经回路对多触须丘脑输入所进行的操作,与相邻桶状结构无关。在此我们报告,一个桶状结构内相邻触须诱发的兴奋和抑制不受相应相邻桶状结构切除的影响。另一方面,在颗粒上层神经元中,对被切除桶状结构相关触须的兴奋性反应会大幅降低。我们得出结论,第IV层的桶状结构起着独立并行处理器阵列的作用,每个处理器都单独转换丘脑传入输入,以供其他层中水平互连的神经回路进行后续处理。

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