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关于空间频率与大脑半球:来自电生理学和神经心理学视角的一些评论。

On spatial frequencies and cerebral hemispheres: some remarks from the electrophysiological and neuropsychological points of view.

作者信息

Mecacci L

出版信息

Brain Cogn. 1993 Jul;22(2):199-212. doi: 10.1006/brcg.1993.1034.

Abstract

The spatial frequency hypothesis on hemispheric specialization gave rise to contradictory experimental results, commented on in Brain and Cognition by Christman (1989) and Peterzell (1991). The question is discussed through a review of the electrophysiological and neuropsychological research on hemispheric asymmetry of spatial frequency processing. The general hypothesis of the hemispheric specialization for this basic visual information appears to be supported by recent works on evoked potentials by gratings and checkerboards. However, an interaction between the cerebral hemisphere, spatial frequency, and temporal frequency was found more than a sharp dichotomy between low (right hemisphere) and high spatial frequencies (left hemisphere), as indeed it was proposed by the spatial frequency hypothesis. Other relevant physical parameters in generating the hemispheric asymmetry were found to be the contrast and the visual field size. The neuropsychological research on brain-injured patients has given some further evidence of the hemispheric asymmetry in spatial frequency processing. In conclusion, it is argued that the major merit of the spatial frequency hypothesis was in the attempt to investigate the hemispheric specialization of lower and higher levels of visual information processing from the perspective of a unified computational conception of visual perception.

摘要

关于半球特化的空间频率假说产生了相互矛盾的实验结果,克里斯曼(1989年)和彼得泽尔(1991年)在《大脑与认知》中对此进行了评论。本文通过回顾关于空间频率处理半球不对称性的电生理和神经心理学研究来探讨这个问题。半球对这种基本视觉信息的特化这一总体假说似乎得到了最近关于光栅和棋盘格诱发电位研究的支持。然而,人们发现大脑半球、空间频率和时间频率之间存在相互作用,而并非如空间频率假说所提出的那样,在低空间频率(右半球)和高空间频率(左半球)之间存在明显的二分法。在产生半球不对称性方面,其他相关的物理参数是对比度和视野大小。对脑损伤患者的神经心理学研究进一步证明了空间频率处理中的半球不对称性。总之,有人认为空间频率假说的主要优点在于试图从视觉感知统一计算概念的角度来研究视觉信息处理较低和较高水平的半球特化。

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