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Studies of the coefficient of variation of the magnitude of EEG signals

机译:脑电信号幅度变异系数的研究

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摘要

An analysis of the variation in magnitude of EEG signals in various frequency bands of anesthetized patients and normal sleeping volunteers was carried out. The coefficient of variation (CoV), i.e. the standard deviation/mean, within 10 second epochs was found to be quite constant throughout the whole of the EEG recordings and was typically about 0.46. This was found to be the case for both the patients and the volunteers. Histograms of the magnitudes indicated that the magnitudes are distributed as f(x)=βxe(-αx2) functions. However a CoV of 0.46 is consistent with f(x)=βxe(-αx3) functions. The non-stationary nature of the EEG is such that it is likely that while over short periods the EEG magnitudes are distributed as f(x)=βxe(-αx3) functions, variations of α over time mean that in the long term the EEG magnitudes are distributed as f(x)=βxe(-αx2) functions.
机译:分析了麻醉患者和正常睡眠志愿者在各个频段的脑电信号幅度的变化。发现在整个EEG记录中,在10秒内的变化系数(CoV),即标准偏差/均值是相当恒定的,通常约为0.46。发现患者和志愿者都是这种情况。量级的直方图表明,量级以f(x)=βxe(-αx2)函数分布。但是,CoV为0.46与f(x)=βxe(-αx3)函数一致。脑电图的非平稳性质使得可能在短时间内脑电图幅值以f(x)=βxe(-αx3)函数的形式分布,而α随时间的变化意味着从长远来看,脑电图幅度分布为f(x)=βxe(-αx2)函数。

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