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首页> 外文期刊>Sleep >Scatterplot analysis of EEG slow-wave magnitude and heart rate variability: an integrative exploration of cerebral cortical and autonomic functions.
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Scatterplot analysis of EEG slow-wave magnitude and heart rate variability: an integrative exploration of cerebral cortical and autonomic functions.

机译:脑电图慢波幅度和心率变异性的散点图分析:对大脑皮层和自主神经功能的综合探索。

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摘要

STUDY OBJECTIVES: To explore interactions between cerebral cortical and autonomic functions in different sleep-wake states. DESIGN: Active waking (AW), quiet sleep (QS), and paradoxical sleep (PS) of adult male Wistar-Kyoto rats (WKY) on their daytime sleep were compared. PARTICIPANTS: Ten WKY. INTERVENTIONS: All rats had electrodes implanted for polygraphic recordings. One week later, a 6-hour daytime sleep-wakefulness recording session was performed. MEASUREMENTS AND RESULTS: A scatterplot analysis of electroencephalogram (EEG) slow-wave magnitude (0.5-4 Hz) and heart rate variability (HRV) was applied in each rat. The EEG slow-wave-RR interval scatterplot from all of the recordings revealed a propeller-like pattern. If the scatterplot was divided into AW, PS, and QS according to the corresponding EEG mean power frequency and nuchal electromyogram, the EEG slow wave-RR interval relationship became nil, negative, and positive for AW, PS, and QS, respectively. A significant negative relationship was found for EEG slow-wave and high-frequency power of HRV (HF) coupling during PS and for EEG slow wave and low-frequency power of HRV to HF ratio (LF/HF) coupling during QS. The optimal time lags for the slow wave-LF/HF relationship were different between PS and QS. CONCLUSIONS: Bradycardia noted in QS and PS was related to sympathetic suppression and vagal excitation, respectively. The EEG slow wave-HRV scatterplot may provide unique insights into studies of sleep, and such a relationship may delineate the sleep-state-dependent fluctuations in autonomic nervous system activity.
机译:研究目的:探讨不同睡眠状态下大脑皮质与植物神经功能之间的相互作用。设计:比较了成年雄性Wistar-Kyoto大鼠(WKY)在白天睡眠时的主动苏醒(AW),安静睡眠(QS)和悖论性睡眠(PS)。参加者:十个星期。干预:所有大鼠均植入电极,以进行多形记录。一周后,进行了6小时的白天睡眠-清醒记录会议。测量和结果:对每只大鼠进行脑电图(EEG)慢波幅度(0.5-4 Hz)和心率变异性(HRV)的散点图分析。所有记录的EEG慢波RR间隔散点图都显示出螺旋桨状模式。如果根据对应的EEG平均功率频率和颈肌肌电图将散点图分为AW,PS和QS,则AW,PS和QS的EEG慢波-RR间隔关系分别变为零,负和正。发现PS期间HEG(HF)耦合的EEG慢波和高频功率与QS期间HRV与HF比(LF / HF)耦合的EEG慢波和低频功率存在显着负相关。 PS和QS的慢波-LF / HF关系的最佳时滞不同。结论:QS和PS中注意到的心动过缓分别与交感抑制和迷走神经兴奋有关。脑电图慢波-HRV散点图可以提供有关睡眠研究的独特见解,并且这种关系可以描述自主神经系统活动中依赖睡眠状态的波动。

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