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[强直后半球间相互作用中背景γ振荡的变化]

[Posttetanic changes in the background gamma oscillations in interhemispheric interactions].

作者信息

Sil'kis I G, Bogdanova O G

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.

出版信息

Zh Vyssh Nerv Deiat Im I P Pavlova. 1998 Mar-Apr;48(2):267-80.

PMID:9644807
Abstract

The influence of high-frequency microstimulation (HFMS) of one of the hemispheres on the parameters of spontaneous gamma-oscillations in the neural network containing callosal cells of the motor cortex of both hemispheres. There were three modes in the background oscillation periods distribution, which corresponded to the frequencies 40-60, 70-100, and 100-200 Hz. These oscillation frequencies were also revealed after the HFMS in neural interactions of the cells, which were active before the HFMS; the frequency 40-60 Hz, which dominated before the HFMS, became even more pronounced. The same three groups of oscillation frequencies were found in the activity of cells which became active after the HFMS. The expression of oscillations, the number of oscillatory interactions, as well as the number of neuronal pairs with additional synchronization decreased after the HFMS, which suggests a decrease in synchronization. Taking into account the results of simulation experiments that the frequency of gamma-oscillations is determined by the strength of inhibitory and excitatory input, we suggest that the long-term posttetanic modifications in the efficacy of synaptic inputs of the neurons of both hemispheres underlie the observed posttetanic changes.

摘要

对一侧半球进行高频微刺激(HFMS)对包含两侧半球运动皮层胼胝体细胞的神经网络中自发伽马振荡参数的影响。在背景振荡周期分布中有三种模式,分别对应40 - 60赫兹、70 - 100赫兹和100 - 200赫兹的频率。在高频微刺激前活跃的细胞的神经相互作用中,高频微刺激后也显示出这些振荡频率;高频微刺激前占主导的40 - 60赫兹频率变得更加明显。在高频微刺激后变得活跃的细胞活动中也发现了相同的三组振荡频率。高频微刺激后,振荡的表达、振荡相互作用的数量以及具有额外同步的神经元对的数量减少,这表明同步性降低。考虑到模拟实验结果表明伽马振荡频率由抑制性和兴奋性输入的强度决定,我们认为两侧半球神经元突触输入效能的长期强直后修饰是观察到的强直后变化的基础。

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