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Intrinsic Complexity of Sympathetic and Parasympathetic Dynamics from HRV series: a Preliminary Study on Postural Changes

机译:HRV系列的交感神经和副交感神经动力学的内在复杂性:姿势变化的初步研究

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The analysis of complex heartbeat dynamics has been widely used to characterize heartbeat autonomic control in healthy and pathological conditions. However, underlying physiological correlates of complexity measurements from heart rate variability (HRV) series have not been identified yet. To this extent, we investigated intrinsic irregularity and complexity of cardiac sympathetic and vagal activity time series during postural changes. We exploited our recently proposed HRV-based, time-varying Sympathetic and Parasympathetic Activity Indices (SAI and PAI) and performed Sample Entropy, Fuzzy Entropy, and Distribution Entropy calculations on publicly-available heartbeat series gathered from 10 healthy subjects undergoing resting state and passive slow tilt sessions. Results show significantly higher entropy values during the upright position than resting state in both SAI and PAI series. We conclude that an increase in HRV complexity resulting from postural changes may derive from sympathetic and vagal activities with higher complex dynamics.
机译:复杂心跳动力学的分析已广泛用于表征健康和病理条件下的心跳自主控制。但是,尚未确定根据心率变异性(HRV)系列进行的复杂度测量的潜在生理相关性。在此程度上,我们调查了姿势改变期间心脏交感和迷走神经活动时间序列的内在不规则性和复杂性。我们利用了我们最近提出的基于HRV的时变交感和副交感活动指数(SAI和PAI),并对从10名处于静息状态和被动状态的健康受试者收集的公开可用心跳序列进行了样本熵,模糊熵和分布熵计算缓慢的倾斜会话。结果显示,在SAI和PAI系列中,直立位置的熵值均显着高于静止状态。我们得出的结论是,姿势变化导致的HRV复杂性增加可能源于具有较高复杂动力学的交感神经和迷走神经活动。

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