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冥想期间脑电图信号的双谱估计

Bispectrum estimation of electroencephalogram signals during meditation.

作者信息

Goshvarpour Ateke, Goshvarpour Atefeh, Rahati Saeed, Saadatian Vahid

机构信息

Department of Biomedical Engineering, Islamic Azad University, Mashhad Branch, Iran.

Department of Electrical Engineering, Islamic Azad University, Mashhad Branch, Iran.

出版信息

Iran J Psychiatry Behav Sci. 2012 Fall;6(2):48-54.

Abstract

OBJECTIVE

Electroencephalogram is a reliable reflection of many physiological factors modulating the brain. The Bispectrum is very useful for analyzing non-Gaussian signals such as EEG, and detecting the quadratic phase coupling between distinct frequency components in EEG signals.The main aim of this study was to test the existence of nonlinear phase coupling within the EEG signals in a certain psycho-physiological state; meditation.

METHODS

Eleven meditators and four non-meditators were asked to do meditation by listening to the guidance of the master, and 10 subjects were asked to do meditation by themselves. Bispectrum estimation was applied to analyze EEG signals, before and during meditation. EEG signals were recorded using 16-channel PowerLab. ANOVA test was used to establish significant changes in Bispectrum parameters, during two different states (before and during meditation).

RESULTS

Mean Bispectrum magnitude of each channel increased during meditation. These increments of phase coupling are more obvious in occipital region (Pz channel) than frontal and central regions (Fz and Cz channels). Besides that phase coupled harmonics are shifted to the higher frequencies during meditation.

CONCLUSION

Bispectrum methods can be useful for distinction between two states (before and during meditation).

摘要

目的

脑电图是对调节大脑的多种生理因素的可靠反映。双谱对于分析诸如脑电图之类的非高斯信号以及检测脑电图信号中不同频率成分之间的二次相位耦合非常有用。本研究的主要目的是测试在特定心理生理状态(冥想)下脑电图信号中非线性相位耦合的存在情况。

方法

11名冥想者和4名非冥想者被要求在大师的指导下进行冥想,10名受试者被要求自行冥想。在冥想前和冥想期间,应用双谱估计来分析脑电图信号。使用16通道PowerLab记录脑电图信号。方差分析用于确定在两种不同状态(冥想前和冥想期间)双谱参数的显著变化。

结果

冥想期间每个通道的平均双谱幅度增加。这种相位耦合的增加在枕叶区域(Pz通道)比额叶和中央区域(Fz和Cz通道)更明显。此外,冥想期间相位耦合谐波向更高频率移动。

结论

双谱方法可用于区分两种状态(冥想前和冥想期间)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2963/3940018/7085cce70c2a/ijpbs-006-048-g001.jpg

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