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分形时间中的大脑:人类脑电图的1/f类功率谱标度

The brain in fractal time: 1/f-like power spectrum scaling of the human electroencephalogram.

作者信息

Pritchard W S

机构信息

Biobehavioral Division, R. J. Reynolds Tobacco Company, Winston Salem, NC 27102.

出版信息

Int J Neurosci. 1992 Sep;66(1-2):119-29. doi: 10.3109/00207459208999796.

Abstract

"1/f-like" power spectrum scaling is a ubiquitous feature of complex systems. In such scaling, the power spectrum of a given time series is dominated by an inverse power law, resulting in an inverse linear relation between log power and log frequency. The 1/f-like power spectrum scaling properties of human, resting eyes-closed and eyes-open EEG were examined. For both eyes-closed and eyes-open EEG, log power had a significant inverse linear relation with log frequency. The slope of this relation was not correlated with previously-calculated Grassberger-Procaccia dimension estimates for the same data, indicating that the EEG is not a 1/f-like stochastic process. Further, the degree of deviation from perfect log power versus log frequency linearity was related to power in the 8-12 Hz alpha frequency band. It is speculated that this deviation may be related to the low dimension of a chaotic alpha rhythm relative to other EEG rhythms.

摘要

“类1/f”功率谱标度是复杂系统中普遍存在的一个特征。在这种标度中,给定时间序列的功率谱由幂律反比主导,导致对数功率与对数频率之间呈反比线性关系。研究了人类闭眼和睁眼静息状态下脑电图(EEG)的类1/f功率谱标度特性。对于闭眼和睁眼EEG,对数功率与对数频率均呈显著的反比线性关系。该关系的斜率与针对相同数据先前计算的格拉斯贝格-普罗卡恰维数估计值不相关,这表明EEG不是类1/f随机过程。此外,与完美的对数功率与对数频率线性关系的偏离程度与8 - 12赫兹阿尔法频段的功率有关。据推测,这种偏离可能与相对于其他EEG节律而言混沌阿尔法节律的低维特性有关。

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