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基于分形和熵方法的睡眠脑电图非线性动力学分析。

Nonlinear dynamical analysis of sleep electroencephalography using fractal and entropy approaches.

机构信息

Division of Interdisciplinary Medicine and Biotechnology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.

State Key Laboratory of Hydroscience and Engineering, Department of Hydraulic Engineering, Tsinghua University, Beijing, China.

出版信息

Sleep Med Rev. 2018 Feb;37:85-93. doi: 10.1016/j.smrv.2017.01.003. Epub 2017 Jan 29.

Abstract

The analysis of electroencephalography (EEG) recordings has attracted increasing interest in recent decades and provides the pivotal scientific tool for researchers to quantitatively study brain activity during sleep, and has extended our knowledge of the fundamental mechanisms of sleep physiology. Conventional EEG analyses are mostly based on Fourier transform technique which assumes linearity and stationarity of the signal being analyzed. However, due to the complex and dynamical characteristics of EEG, nonlinear approaches are more appropriate for assessing the intrinsic dynamics of EEG and exploring the physiological mechanisms of brain activity during sleep. Therefore, this article introduces the most commonly used nonlinear methods based on the concepts of fractals and entropy, and we review the novel findings from their clinical applications. We propose that nonlinear measures may provide extensive insights into brain activities during sleep. Further studies are proposed to mitigate the limitations and to expand the applications of nonlinear EEG analysis for a more comprehensive understanding of sleep dynamics.

摘要

近年来,脑电图(EEG)记录的分析引起了越来越多的关注,为研究人员提供了定量研究睡眠期间大脑活动的关键科学工具,并扩展了我们对睡眠生理学基本机制的认识。传统的 EEG 分析主要基于傅里叶变换技术,该技术假设被分析信号的线性和稳定性。然而,由于 EEG 的复杂和动态特性,非线性方法更适合评估 EEG 的内在动力学和探索睡眠期间大脑活动的生理机制。因此,本文介绍了基于分形和熵概念的最常用的非线性方法,并回顾了它们在临床应用中的新发现。我们提出,非线性测量方法可以为睡眠期间的大脑活动提供广泛的见解。进一步的研究旨在减轻限制并扩展非线性 EEG 分析的应用,以更全面地了解睡眠动态。

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