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颞下皮质的皮质柱状组织被重新审视。

Cortical columnar organization is reconsidered in inferior temporal cortex.

作者信息

Sato Takayuki, Uchida Go, Tanifuji Manabu

机构信息

Laboratory for Integrative Neural Systems, RIKEN Brain Science Institute, Wako-shi, Saitama 351-0198, Japan.

出版信息

Cereb Cortex. 2009 Aug;19(8):1870-88. doi: 10.1093/cercor/bhn218. Epub 2008 Dec 9.

Abstract

The object selectivity of nearby cells in inferior temporal (IT) cortex is often different. To elucidate the relationship between columnar organization in IT cortex and the variability among neurons with respect to object selectivity, we used optical imaging technique to locate columnar regions (activity spots) and systematically compared object selectivity of individual neurons within and across the spots. The object selectivity of a given cell in a spot was similar to that of the averaged cellular activity within the spot. However, there was not such similarity among different spots (>600 microm apart). We suggest that each cell is characterized by 1) a cell-specific response property that cause cell-to-cell variability in object selectivity and 2) one or potentially a few numbers of response properties common across the cells within a spot, which provide the basis for columnar organization in IT cortex. Furthermore, similarity in object selectivity among cells within a randomly chosen site was lower than that for a cell in an activity spot identified by optical imaging beforehand. We suggest that the cortex may be organized in a region where neurons with similar response properties were densely clustered and a region where neurons with similar response properties were sparsely clustered.

摘要

颞下(IT)皮质中相邻细胞的物体选择性通常有所不同。为了阐明IT皮质中的柱状组织与神经元在物体选择性方面的变异性之间的关系,我们使用光学成像技术来定位柱状区域(活动点),并系统地比较了各个活动点内以及不同活动点之间单个神经元的物体选择性。一个活动点内给定细胞的物体选择性与该活动点内细胞平均活动的物体选择性相似。然而,不同活动点(相距>600微米)之间不存在这种相似性。我们认为,每个细胞具有以下两个特征:1)一种细胞特异性反应特性,这种特性导致细胞间在物体选择性上存在变异性;2)一个活动点内细胞共有的一种或可能几种反应特性,这为IT皮质中的柱状组织提供了基础。此外,随机选择的位点内细胞之间在物体选择性上的相似性低于预先通过光学成像确定的活动点内细胞的相似性。我们认为,皮质可能是按照如下方式组织的:一个区域中具有相似反应特性的神经元密集聚集,另一个区域中具有相似反应特性的神经元稀疏聚集。

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