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快速重复运动诱发的稳态运动相关电位。

Steady-state movement-related potentials evoked by fast repetitive movements.

作者信息

Kopp B, Kunkel A, Müller G, Mühlnickel W, Flor H

机构信息

Humboldt University, Berlin, Germany.

出版信息

Brain Topogr. 2000 Fall;13(1):21-8. doi: 10.1023/a:1007830118227.

Abstract

We investigated steady-state movement-related cortical potentials elicited by fast repetitive movements (1/sec) with 50-channel EEG. The experimental design comprised a comparison (a) between unilateral movements of the digits and the toes and (b) between metronome-paced and self-paced initiation of the movements. A distinct biphasic pattern of electrical activity following movement onset was observed, namely a frontal negative peak at a latency of 90 ms (post-MP100) anda frontal positive peak at a latency of 310ms (post-MP300). Pacing exerted its effects mainly on the amplitude and on the latency of the post-MP300. Source analysis revealed that both peaks could be modelled by a single source. The source locations were highly reproducible across the metronome-paced and self-paced conditions, and, they followed the expected somatotopic organisation.

摘要

我们使用50通道脑电图研究了由快速重复运动(每秒1次)引发的与运动相关的稳态皮层电位。实验设计包括(a)手指和脚趾单侧运动之间的比较,以及(b)节拍器节奏和自主节奏启动运动之间的比较。运动开始后观察到一种独特的双相电活动模式,即在90毫秒潜伏期(运动后100毫秒)出现一个额部负峰,在310毫秒潜伏期(运动后300毫秒)出现一个额部正峰。节奏主要对运动后300毫秒的波幅和潜伏期产生影响。源分析表明,这两个峰值都可以由单个源建模。源位置在节拍器节奏和自主节奏条件下具有高度可重复性,并且它们遵循预期的躯体感觉组织。

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