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初级视觉皮层中三维空间的神经元表征与眼球运动控制

Neuronal Representation of 3-D Space in the Primary Visual Cortex and Control of Eye Movements.

作者信息

Alekseenko Svetlana V

机构信息

Laboratory of Visual Physiology, Pavlov Institute of Physiology of the Russian Academy of Sciences, St. Petersburg, Russia

出版信息

Perception. 2015;44(8-9):995-1006. doi: 10.1177/0301006615594930. Epub 2015 Aug 14.

Abstract

The aim of this article is to consider the correlations between the structure of the primary visual cortical area V1 and control of coordinated movements of the two eyes. Using the anatomical data available, a schematic map of 3-D space representation in the layer IV of area V1 containing only monocular cells has been constructed. The analysis of this map revealed that binocular neurons of V1, which are formed by convergence of monocular cells, should encode the absolute disparity. Participation of monocular and binocular neurons of V1 in the control of convergence, divergence, and version eye movements is discussed. It is proposed that synchronous contraction of corresponding extraocular muscles of both eyes for vergence might be ensured by duplicated transmission of information from the central part of retina to visual cortex of both hemispheres.

摘要

本文旨在探讨初级视皮层V1区的结构与双眼协调运动控制之间的相关性。利用现有的解剖学数据,构建了仅包含单眼细胞的V1区第IV层三维空间表征示意图。对该示意图的分析表明,由单眼细胞汇聚形成的V1区双眼神经元应编码绝对视差。讨论了V1区单眼和双眼神经元在集合、散开和版本眼运动控制中的作用。有人提出,双眼集合时相应眼外肌的同步收缩可能是通过从视网膜中央部分向两侧半球视皮层重复传递信息来确保的。

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