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利用脑电图的加速度谱熵对α波去同步化进行量化。

Quantification of alpha rhythm desynchronization using the acceleration spectrum entropy of the EEG.

作者信息

Stam C J, Tavy D L, Keunen R W

机构信息

Department of Neurology and Clinical Neurophysiology, Municipal Hospital of The Hague, The Netherlands.

出版信息

Clin Electroencephalogr. 1993 Jul;24(3):104-9. doi: 10.1177/155005949302400306.

Abstract

Desynchronization of the alpha rhythm is usually quantified as a loss of power in the alpha band. In this study we describe an alternative approach where desynchronization is characterized as an increase in the irregularity of the EEG signal. A new measure, the acceleration spectrum entropy (ASE), is used to quantify EEG irregularity. The ASE is the normalized information entropy of the amplitude spectrum of the second derivative of a time series. The ASE is a measure of the randomness or irregularity of a time series and ranges from 0 (straight line) to 100 (discrete random signal). The ASE was calculated for short EEG epochs under eyes closed and eyes open conditions in 15 subjects. There was a significant increase in ASE in the eyes open condition, reflecting an increase in EEG complexity. The ASE is a sensitive measure of EEG desynchronization.

摘要

α节律的去同步化通常被量化为α频段功率的损失。在本研究中,我们描述了一种替代方法,其中去同步化被表征为脑电图(EEG)信号不规则性的增加。一种新的测量方法,即加速度谱熵(ASE),用于量化EEG的不规则性。ASE是时间序列二阶导数幅度谱的归一化信息熵。ASE是时间序列随机性或不规则性的一种度量,范围从0(直线)到100(离散随机信号)。在15名受试者闭眼和睁眼条件下,对短时间的EEG片段计算了ASE。睁眼条件下ASE显著增加,反映了EEG复杂性的增加。ASE是EEG去同步化的一种敏感度量。

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