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大脑中的γ波段反应:心理生理相关性及功能意义的简要综述

Gamma-band responses in the brain: a short review of psychophysiological correlates and functional significance.

作者信息

Başar-Eroglu C, Strüber D, Schürmann M, Stadler M, Başar E

机构信息

Institute of Psychology and Cognition Research, University of Bremen, Germany.

出版信息

Int J Psychophysiol. 1996 Nov;24(1-2):101-12. doi: 10.1016/s0167-8760(96)00051-7.

Abstract

The present study shows that gamma-band (40 Hz) activities exist in a number of brain structures of different species, with seemingly different functional/behavioral correlates. This rhythm has also different dynamics in various structures and under different experimental conditions: it exists spontaneously and/or can be evoked, induced or emitted with different latencies and relations to sensory-cognitive events. Recent measurements of gamma-band activity at the cellular level stress high level functional correlates such as binding of features. In contrast, field potential measurements in both humans and animals demonstrate that gamma-band responses may have multifold functions both in 'obligatory' sensory and in cognitive processing. With respect to the generators of gamma activity, experimental data hint at the existence of a distributed gamma system in the brain. Furthermore, an interpretation of gamma rhythms as universal functional building blocks is suggested.

摘要

本研究表明,γ波段(40赫兹)活动存在于不同物种的多种脑结构中,其功能/行为关联似乎有所不同。这种节律在不同结构和不同实验条件下也具有不同的动态变化:它可自发存在,和/或能以不同的潜伏期以及与感觉-认知事件的关系被诱发、诱导或发出。近期在细胞水平对γ波段活动的测量强调了诸如特征绑定等高级功能关联。相比之下,对人类和动物的场电位测量表明,γ波段反应在“强制性”感觉和认知加工中可能具有多种功能。关于γ活动的产生源,实验数据暗示大脑中存在一个分布式γ系统。此外,有人提出将γ节律解释为通用的功能构建模块。

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