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Corticomuscular synchronization with small and large dynamic force output

机译:带动动力输出大小的皮层同步

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摘要

BackgroundOver the last few years much research has been devoted to investigating the synchronization between cortical motor and muscular activity as measured by EEG/MEG-EMG coherence. The main focus so far has been on corticomuscular coherence (CMC) during static force condition, for which coherence in beta-range has been described. In contrast, we showed in a recent study [] that dynamic force condition is accompanied by gamma-range CMC. The modulation of the CMC by various dynamic force amplitudes, however, remained uninvestigated. The present study addresses this question. We examined eight healthy human subjects. EEG and surface EMG were recorded simultaneously. The visuomotor task consisted in isometric compensation for 3 forces (static, small and large dynamic) generated by a manipulandum. The CMC, the cortical EEG spectral power (SP), the EMG SP and the errors in motor performance (as the difference between target and exerted force) were analyzed.
机译:背景技术在过去的几年中,许多研究致力于研究皮质运动与肌肉活动之间的同步性,这些同步性通过EEG / MEG-EMG相干性来衡量。到目前为止,主要的重点是静态力条件下的皮层相干性(CMC),对此已描述了β范围内的相干性。相反,我们在最近的一项研究中显示[],动态力条件伴有伽马范围CMC。然而,仍未研究通过各种动态力振幅对CMC的调制。本研究解决了这个问题。我们检查了八名健康的人类受试者。同时记录脑电图和表面肌电图。视觉运动的任务包括对Manipulandum产生的3种力(静态,小和大动态)进行等距补偿。分析了CMC,皮质EEG频谱功率(SP),EMG SP和运动性能的误差(作为目标力与作用力之间的差)。

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