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首页> 外文期刊>Clinical neurophysiology >Event-related desynchronization and excitability of the ipsilateral motor cortex during simple self-paced finger movements.
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Event-related desynchronization and excitability of the ipsilateral motor cortex during simple self-paced finger movements.

机译:简单的自定进度手指运动过程中,与事件相关的不同步和同侧运动皮层的兴奋性。

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摘要

OBJECTIVE: To study the time course of oscillatory EEG activity and corticospinal excitability of the ipsilateral primary motor cortex (iM1) during self-paced phasic extension movements of fingers II-V.METHODS: We designed an experiment in which cortical activation, measured by spectral-power analysis of 28-channel EEG, and cortical excitability, measured by transcranial magnetic stimulation (TMS), were assessed during phasic self-paced extensions of the right fingers II-V in 28 right-handed subjects. TMS was delivered to iM1 0-1500 ms after movement onset.RESULTS: Ipsilateral event-related desynchronization (ERD) during finger movement was paralleled by increased cortical excitability of iM1 from 0-200 ms after movement onset and by increased intracortical facilitation (ICF) without changes in intracortical inhibition (ICI) or peripheral measures (F waves). TMS during periods of post-movement event-related synchronization (ERS) revealed no significant changes in cortical excitability in iM1.CONCLUSIONS: Our findings indicate that motor cortical ERD ipsilateral to the movement is associated with increased corticospinal excitability, while ERS is coupled with its removal. These data are compatible with the concept that iM1 contributes actively to motor control. No evidence for inhibitory modulation of iM1 was detected in association with self-paced phasic finger movements.SIGNIFICANCE: Understanding the physiological role of iM1 in motor control.
机译:目的:研究自发性手指II-V的自律性相移运动过程中同侧初级运动皮层(iM1)的振荡性EEG活动和皮质脊髓兴奋性的时程。方法:我们设计了一个实验,该实验通过光谱测量皮质激活在28个右撇子受试者的右手指II-V的自律起搏阶段中,通过经颅磁刺激(TMS)测量了28通道脑电图的功率分析和皮质兴奋性。 TMS在运动开始后0-1500 ms传递到iM1。结果:手指运动过程中的同侧事件相关失步(ERD)与运动开始后0-200 ms的iM1皮质兴奋性增加和皮质内促进作用(ICF)平行皮质内抑制(ICI)或周围测量值(F波)没有变化。运动后事件相关同步(ERS)期间的TMS揭示iM1的皮质兴奋性无明显变化。去除。这些数据与iM1积极有助于电机控制的概念兼容。没有证据表明iM1具有抑制性调节与自定相移相配合的意义。意义:了解iM1在运动控制中的生理作用。

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