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首页> 外文期刊>Journal of Neurophysiology >Time-frequency analysis of short-lasting modulation of EEG induced by intracortical and transcallosal paired TMS over motor areas
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Time-frequency analysis of short-lasting modulation of EEG induced by intracortical and transcallosal paired TMS over motor areas

机译:皮层内和跨call体配对TMS在运动区域引起的EEG持续性调制的时频分析

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摘要

Dynamic changes in spontaneous electroencephalogram (EEG) rhythms can be seen to occur with a high rate of variability. An innovative method to study brain function is by triggering oscillatory brain activity with transcranial magnetic stimulation (TMS). EEG-TMS coregistration was performed on five healthy subjects during a 1-day experimental session that involved four steps: baseline acquisition, unconditioned single-pulse TMS, intracortical inhibition (ICI, 3 ms) paired-pulse TMS, and transcallosal stimulation over left and right primary motor cortex (M1). A time-frequency analysis based on the wavelet method was used to characterize rapid modifications of oscillatory EEG rhythms induced by TMS. Single, paired, and transcallosal TMS applied on the sensorimotor areas induced rapid desynchronization over the frontal and central-parietal electrodes mainly in the alpha and beta bands, followed by a rebound of synchronization, and rapid synchronization of delta and theta activity. Wavelet analysis after a perturbation approach is a novel way to investigate modulation of oscillatory brain activity. The main findings are consistent with the concept that the human motor system may be based on networklike oscillatory cortical activity and might be modulated by single, paired, and transcallosal magnetic pulses applied to M1, suggesting a phenomenon of fast brain activity resetting and triggering of slow activity.
机译:自发性脑电图(EEG)节律的动态变化可以看到发生率很高的变化。研究脑功能的一种创新方法是通过经颅磁刺激(TMS)触发振荡性脑活动。在为期1天的实验过程中,对5位健康受试者进行了EEG-TMS整合,包括四个步骤:基线获取,无条件单脉冲TMS,皮质内抑制(ICI,3 ms),双脉冲TMS和经左和右上方的经call刺激右侧初级运动皮层(M1)。基于小波方法的时频分析用于表征TMS诱导的振荡性脑电节律的快速修改。应用于感觉运动区的单,成对和经call肌TMS引起额叶和中央顶电极的快速去同步,主要是在α和β波段,随后同步回弹,并且δ和θ活动迅速同步。扰动方法后的小波分析是研究振荡脑活动调制的一种新颖方法。主要发现与人体运动系统可能基于类似网络的振荡皮层活动并且可能受应用于M1的单个,成对和经trans声磁脉冲进行调制的概念相一致,这表明大脑活动快速复位且触发缓慢的现象活动。

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