标题: 探究非线性相依性的方法论以应用于禅定脑电波分析
Investigation of Nonlinear-interdependence Methodology for Chan-meditation EEG Analysis
作者: 吴佩珊
Wu, Pei-Shan
罗佩祯
Lo, Pei-Chen
电控工程研究所
关键字: 非线性相依性;禅坐;脑电波;nonlinear interdependence;meditation;EEG
公开日期: 2013
摘要: 基于相位空间重建法的非线性相依性(Nonlinear Interdependence)分析,常被应用于分析大脑神经网路之间的动态连结特性。此方法主要包含脑电波时间序列的相空间轨迹重建与相似度指标(Similarity index)的量化。虽然相空间重建方法已被研究多年,但是针对不同系统的实验参数之选定仍然是一个存在的问题。本论文以非线性动态系统的观点,探究非线性相依性的方法论,并应用于禅定脑电波。首先,探究参数对于多通道脑电波在相空间重建过程的影响,并利用Cao方法与互资讯(Mutual Information)方法分别决定嵌入维度与延宕时间。
在选择合适的参数范围值之后,本论文进行禅定脑电波的非线性相依性案例研究。我们挑选出一些具有特殊节律的禅定脑电波讯号,分析每段脑波讯号在不同录制电极通道之间的非线性相依性,并提出一个主被动优势度指数(active-passive dominance index, IAPD)做为量化参数。分析结果指出,含有theta 与低频alpha(8~10Hz)成分的脑电波会在前脑与中前脑区有主动性影响力较为主导的现象。这些初步的禅定脑电波研究结果,能针对大脑的神经网络连结特性提供了一些新的见解。
Nonlinear-interdependence analysis based on phase space reconstruction may provide a feasible way to access brain dynamical interactions among regional neural networks. The analysis mainly involves the reconstruction of phase-space trajectory from EEG and the estimation of similarity index. The reconstruction of phase-space trajectory from time series has been studied for many years. Nevertheless, selection of appropriate implementation parameters is still an open question, particularly, for different dynamic systems. This study was aimed at the investigation of the systematic approach for determining implementation parameters adopted in the nonlinear interdependence analysis of the phase-space trajectory reconstructed from multichannel EEG signals. Embedding dimension was analyzed by Cao’s method and time delay was estimated by mutual information analysis.
With the reliably selected parameters, nonlinear interdependence analysis was applied to a number of screened EEG epochs collected from Chan-meditation practitioners. This thesis presents the results of some case studies on Chan-meditation practitioners based on the evaluation of EEG active-to-passive dominating characteristics. In conclusion, most theta and low-alpha EEG epochs with frontal or frontal-central focalization exhibit source dominating behaviors. This preliminary study may provide new insights into the neural-network interaction of Chan-meditation brain.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070060056
http://hdl.handle.net/11536/72742
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