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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Interpretation of scaling properties of electroencephalographic fluctuations via spectral analysis and underlying physiology - art. no. 032902
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Interpretation of scaling properties of electroencephalographic fluctuations via spectral analysis and underlying physiology - art. no. 032902

机译:通过频谱分析和潜在的生理学解释脑电图波动的缩放性质-艺术。没有。 032902

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Detrended fluctuation analysis has recently demonstrated the existence of two approximate temporal scaling regimes in locally detrended human electroencephalographic (EEG) fluctuations, and has suggested a connection between the location of the breakpoint between regimes and the alpha resonance near 10 Hz. It is shown here that these scalings can be explained in terms of the filtering of the underlying power spectrum implied by the detrending process. Using a recent physiologically based model of EEG generation, the main features of the scalings, and deviations from them, are related to the underlying physiology of dendritic propagation and muscle electrical activity, and it is concluded that the effects of such physiological features are usually clearer in spectra. [References: 14]
机译:去趋势化波动分析最近证明了在局部去趋势化人脑电图(EEG)波动中存在两种近似的时间缩放机制,并且表明了机制之间的断点位置与10 Hz附近的α共振之间存在联系。此处显示,这些缩放比例可以根据去趋势处理所隐含的基础功率谱的滤波来解释。使用最近的基于生理学的脑电图生成模型,标度的主要特征及其偏离与树突传播和肌肉电活动的潜在生理学有关,并且可以得出这样的生理学特征通常更清晰的结论。在光谱中。 [参考:14]

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