视觉皮层柱中的分层处理

Laminar processing in the visual cortical column.

作者信息

Hirsch Judith A, Martinez Luis M

机构信息

Department of Biological Sciences, University of Southern California, 3641 Watt Way, Los Angeles, 90089-2520, USA.

出版信息

Curr Opin Neurobiol. 2006 Aug;16(4):377-84. doi: 10.1016/j.conb.2006.06.014. Epub 2006 Jul 13.

Abstract

Sensory regions of neocortex are organized as arrays of vertical columns composed of cells that share similar response properties, with the orientation columns of the cat's visual cortex being the best known example. Interest in how sensitivity to different stimulus features first emerges in the columns and how this selectivity is refined by subsequent processing has fueled decades of research. A natural starting point in approaching these issues is anatomy. Each column traverses the six cortical layers and each layer has a unique pattern of inputs, intrinsic connections and outputs. Thus, it makes sense to explore the possibility of corresponding laminar differences in sensory function, that is, to examine relationships between morphology and physiology. In addition, to help identify general patterns of cortical organization, it is useful to compare results obtained from different sensory systems and diverse species. The picture that emerges from such comparisons is that each cortical layer serves a distinct role in sensory function. Furthermore, different cortices appear to share some common strategies for processing information but also have specialized mechanisms adapted for the demands of specific sensory tasks.

摘要

新皮层的感觉区域由具有相似反应特性的细胞组成的垂直柱阵列构成,猫视觉皮层的方位柱就是最著名的例子。几十年来,人们一直对不同刺激特征的敏感性如何在这些柱中首次出现以及这种选择性如何通过后续处理得到完善深感兴趣。解决这些问题的一个自然起点是解剖学。每个柱贯穿六个皮质层,并且每个层都有独特的输入、内在连接和输出模式。因此,探索感觉功能中相应的层状差异的可能性是有意义的,也就是说,研究形态学和生理学之间的关系。此外,为了帮助识别皮层组织的一般模式,比较从不同感觉系统和不同物种获得的结果是有用的。从这些比较中得出的情况是,每个皮质层在感觉功能中都起着独特的作用。此外,不同的皮层似乎共享一些处理信息的共同策略,但也有适应特定感觉任务需求的专门机制。

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