Wavelet analysis of intermittent dynamics in nocturnal electrocardiography and electroencephalography data.

IF 2.7 2区 数学 Q1 MATHEMATICS, APPLIED Chaos Pub Date : 2024-08-01 DOI:10.1063/5.0227179
M Zhuravlev, E Egorov, O Moskalenko, Yu Zhuravleva, N Akimova, A Kiselev, O Drapkina, A Runnova
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Abstract

This paper presents the results of a study of the characteristics of phase synchronization between electrocardiography(ECG) and electroencephalography (EEG) signals during night sleep. Polysomnographic recordings of eight generally healthy subjects and eight patients with obstructive sleep apnea syndrome were selected as experimental data. A feature of this study was the introduction of an instantaneous phase for EEG and ECG signals using a continuous wavelet transform at the heart rate frequency using the concept of time scale synchronization, which eliminated the emergence of asynchronous areas of behavior associated with the "leaving" of the fundamental frequency of the cardiovascular system. Instantaneous phase differences were examined for various pairs of EEG and ECG signals during night sleep, and it was shown that in all cases the phase difference exhibited intermittency. Laminar areas of behavior are intervals of phase synchronization, i.e., phase capture. Turbulent intervals are phase jumps of 2π. Statistical studies of the observed intermittent behavior were carried out, namely, distributions of the duration of laminar sections of behavior were estimated. For all pairs of channels, the duration of laminar phases obeyed an exponential law. Based on the analysis of the movement of the phase trajectory on a rotating plane at the moment of detection of the turbulent phase, it was established that in this case the eyelet intermittency was observed. There was no connection between the statistical characteristics of laminar phase distributions for intermittent behavior and the characteristics of night breathing disorders (apnea syndrome). It was found that changes in statistical characteristics in the phase synchronization of EEG and ECG signals were correlated with blood pressure at the time of signal recording in the subjects, which is an interesting effect that requires further research.

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夜间心电图和脑电图数据间歇动态的小波分析。
本文介绍了夜间睡眠时心电图(ECG)和脑电图(EEG)信号相位同步特征的研究结果。实验数据选取了 8 名一般健康受试者和 8 名阻塞性睡眠呼吸暂停综合征患者的多导睡眠图记录。这项研究的一个特点是利用时标同步的概念,在心率频率上使用连续小波变换,为脑电图和心电图信号引入了瞬时相位,从而消除了与心血管系统基频 "离开 "相关的不同步行为区域的出现。对夜间睡眠时的多对脑电图和心电图信号的瞬时相位差进行了研究,结果表明,在所有情况下,相位差都表现出间歇性。层状行为区域是相位同步的间隔,即相位捕捉。湍流区间为 2π 的相位跳跃。对观察到的间歇行为进行了统计研究,即估算了层流行为区域的持续时间分布。在所有通道对中,层流阶段的持续时间都服从指数规律。根据对检测到湍流相位时相位轨迹在旋转平面上的运动分析,可以确定在这种情况下观察到了孔眼间歇现象。间歇行为层相分布的统计特征与夜间呼吸紊乱(呼吸暂停综合症)的特征之间没有联系。研究发现,脑电图和心电图信号相位同步统计特征的变化与受试者记录信号时的血压有关,这是一个有趣的效应,需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chaos
Chaos 物理-物理:数学物理
CiteScore
5.20
自引率
13.80%
发文量
448
审稿时长
2.3 months
期刊介绍: Chaos: An Interdisciplinary Journal of Nonlinear Science is a peer-reviewed journal devoted to increasing the understanding of nonlinear phenomena and describing the manifestations in a manner comprehensible to researchers from a broad spectrum of disciplines.
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