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[空间信息处理过程中的半球间相互作用]

[Hemispheric interaction during the processing of spatial information].

作者信息

Gabibov I M

出版信息

Usp Fiziol Nauk. 1993 Oct-Dec;24(4):3-11.

PMID:8237104
Abstract

As a result studying the features of single neurons of prestrial cortex (field 21) of a cat the interhemispheric differences are revealed. It is found that the sizes of receptive fields (RF) of the neurons of this region in the left hemisphere is 1.5 larger as in the right one. The RFs of the left hemisphere consist of zones (mainly 5-9) than the RFs of the right hemisphere which in turn consist of 1-4 zones. About 70% of neurons of the left hemisphere are invariant to a direction of the movement of stimulus, the similar number of the right hemisphere neurons are selective with respect to orientation of a stimulus. The study of the spatial-frequency characteristics of RTs of this region indicated that the left hemisphere neurons are tuned to more lower frequencies (0.05-0.89 cycle/grade) than neurons of the right hemisphere (0.11-3.5 cycle/grade). The study of an activity of the neurons of field 21 after commissurotomy has demonstrated that in this case the hemispheres are fully lost the possibility to receive information from contralateral semifield of the vision. The sizes of RFs are significantly less and become equal in the both hemispheres. The neurons of this region become selective to an orientation of stimulus both in the left and right hemispheres. On the basis of the results of clinical and psychophysical studies it is customary to assume that the two sides of the visual perception--concrete and abstract--to a certain extent are disintegrated between each other and are supplied chiefly by different hemispheres.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

结果,在研究猫的前额叶皮层(21区)单个神经元的特征时,发现了半球间差异。发现该区域左半球神经元的感受野(RF)大小比右半球大1.5倍。左半球的RF由多个区域(主要是5 - 9个)组成,而右半球的RF由1 - 4个区域组成。左半球约70%的神经元对刺激运动方向不变,右半球相同数量的神经元对刺激方向具有选择性。对该区域RF的空间频率特性研究表明,左半球神经元比右半球神经元调谐到更低的频率(0.05 - 0.89周期/度),右半球神经元为(0.11 - 3.5周期/度)。对21区神经元在胼胝体切开术后的活动研究表明,在这种情况下,半球完全失去了从对侧半视野接收信息的可能性。RF大小显著减小,且在两个半球中变得相等。该区域的神经元在左、右半球都变得对刺激方向具有选择性。根据临床和心理物理学研究结果,通常认为视觉感知的两个方面——具体和抽象——在一定程度上相互分离,且主要由不同半球提供。(摘要截断于250字)

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