MEG and EEG show different sensitivity to myogenic artifacts.

R Zimmermann, E Scharein
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Abstract

Simultaneous measurements of EEG, MEG and EMG were performed during randomized blocks with higher and lower muscular stress in comparison to baseline condition. Power spectral density PSD was analyzed separately for five intervals (theta, delta, alpha, beta, gamma). During increased muscular stress, a significant increase could be observed in most bands of EEG while MEG showed no significant changes. Topography of maximum effects for the EEG render cortical generators implausible and point instead to myogenic sources. This was confirmed by correlating changes in EEG with those in EMG. During reduced muscular stress, only gamma activity of the MEG showed significant amplitude reduction. Modeling myogenic activity, its portion could be estimated to be approximately 10 percent in the spontaneous MEG brain signal.

MEG和EEG对肌源性伪影的敏感性不同。
同时测量脑电图,MEG和肌电图在随机分组中进行,与基线条件相比,肌肉压力较高和较低。功率谱密度PSD分别分析5个区间(theta, delta, alpha, beta, gamma)。肌肉应激增加时,脑电图大部分频带均明显升高,而MEG无明显变化。对脑电图影响最大的地形图使皮层发生器难以置信,而指向肌源性。脑电图与肌电图的相关变化证实了这一点。在减少肌肉压力时,只有脑磁图的伽马活动显示出明显的幅度减少。通过模拟肌源性活动,估计其在自发性脑磁图信号中的比例约为10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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