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Does well-harmonized homeostasis exist in heart rate fluctuations? Time series analysis and model simulations.

机译:心率波动中是否存在协调良好的体内平衡?时间序列分析和模型仿真。

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Analyzing heart rate variability from electrocardiographic recordings has been an important method for assessing cardiovascular autonomic regulation. Researchers have conducted extensive analyses on normal as well as pathological hearts, however, it is still unclear whether increasing or decreasing the complexity of heart rate variability is a characteristic of healthy systems. In this study, we find the existence of well-harmonized homeostasis in heart rate fluctuations, in particular, the evidence is verified among different individuals including healthy subjects, ICU patients, and one child with brainstem dysfunction. The methodology we used is composed of two parts, in which one is the consideration of reduction of cardiorespiratory fluctuations inherited in the original R-R intervals and the other is based upon the concept of nonlinear dynamics to construct the low-dimensional trajectory in the angle plot. The cross-correlation measure between the theoretical angle map and the numerically derived angle trajectory is used to separate recovery (0.73+/-0.13) from deterioration (0.25+/-0.08) of ICU patients. In addition, a simple physiologic (deterministic) model of the interaction between the cardiovascular system and baroreceptor control of arterial pressure is used to explain why homeostasis can exist in heart rate fluctuations. Our study provides a potential link between the clinical data and circulatory system.
机译:从心电图记录分析心率变异性已成为评估心血管自主调节的重要方法。研究人员已经对正常心脏和病理性心脏进行了广泛的分析,但是,尚不清楚增加或降低心率变异性的复杂性是否是健康系统的特征。在这项研究中,我们发现心率波动中存在良好协调的体内平衡,特别是在包括健康受试者,ICU患者和一名脑干功能障碍的儿童在内的不同个体之间验证了证据。我们使用的方法包括两个部分,其中一个是考虑减少原始R-R间隔中继承的心肺波动,另一个是基于非线性动力学的概念来构建角度图中的低维轨迹。理论角度图和数值推导的角度轨迹之间的互相关度量用于将ICU患者的恢复(0.73 +/- 0.13)与恶化(0.25 +/- 0.08)分开。另外,心血管系统和动脉压力的压力感受器控制之间相互作用的简单生理(确定性)模型用于解释为什么心率波动中可能存在稳态。我们的研究提供了临床数据与循环系统之间的潜在联系。

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