[Visually-induced gamma band responses in human EEG- expression of cortical stimulus representation?].

M M Müller, T Elbert, B Rockstroh
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Abstract

The features of a visual stimulus are processed in different regions of the visual cortex with no direct axonal connections. Therefore, neurons in the distributed processing areas must be connected in some way to form the physiological substrate of the percept. On the basis of theoretical considerations and animal experiments, it has been proposed that synchronization of neuronal oscillatory firing patterns in the gamma band range (above 30 Hz) might be essential in linking the anatomically distant cell assemblies that represent the various features of the stimulus. The present work reports on three experiments in which the functional relevance of induced gamma band responses were investigated in the human EEG. Using an identical stimulation design, as used in animal studies, it was demonstrated that human induced gamma band responses resembled those reported from intracortical recordings from animals. It was further shown that alpha and gamma band activities differed in temporal characteristics as well as in topographical features, indicating the representation of different cortical functional states. In accordance with previous animal and human experimental findings, a complex moving stimulus was related to a suppression of induced gamma band activity as opposed to a standing complex stimulus.

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人脑电图中视觉诱导的伽马带反应——皮层刺激表征的表达?
视觉刺激的特征在视觉皮层的不同区域处理,没有直接的轴突连接。因此,分布处理区的神经元必须以某种方式连接起来,形成感知的生理基础。在理论考虑和动物实验的基础上,已经提出,在伽马波段范围内(高于30 Hz)的神经元振荡放电模式的同步可能是连接解剖学上遥远的细胞集合所必需的,这些细胞集合代表了刺激的各种特征。本工作报告了三个实验,其中诱导伽马波段反应的功能相关性在人类脑电图进行了研究。使用与动物研究相同的刺激设计,证明人类诱导的伽马带反应与动物皮质内记录的反应相似。研究进一步表明,α和γ波段活动在时间特征和地形特征上存在差异,表明不同的皮质功能状态的表征。根据先前的动物和人体实验发现,与站立的复杂刺激相反,复杂的运动刺激与抑制诱导的伽马带活动有关。
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