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Combined heart rate variability and dynamic measures for quantitatively characterizing the cardiac stress status during cycling exercise

机译:组合心率变异性和动态措施,用于定量表征循环运动期间的心脏应激状态

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摘要

In this study, we aimed to seek for different ways of measuring cardiac stress in terms of heart rate variability (HRV) and heart rate (HR) dynamics, and to develop a novel index that can effectively summarize the information reflected by these measures to continuously and quantitatively characterize the cardiac stress status during physical exercise. Standard deviation, spectral measure.of HRV as well as a nonlinear detrended fluctuation analysis (DFA) based fractal-like behavior measure of HR dynamics were all evaluated on the RR time series derived from windowed electrocardiogram (ECG) data for the subjects undergoing cycling exercise. We recruited eleven young healthy subjects in our tests. Each subject was asked to maintain a fixed speed under a constant load during the pedaling test. We obtained the running estimates of the standard deviation of the normal-to-normal interval (SDNN), the high-fidelity power spectral density (PSD) of HRV, and the DFA scaling exponent a, respectively. A trend analysis and a multivariate linear regression analysis of these measures were then performed. Numerical experimental results produced by our analyses showed that a decrease in both SDNN and a was seen during the cycling exercise, while there was no significant correlation between the standard lower frequency to higher frequency (LF-to-HF) spectral power ratio of HRV and the exercise intensity. In addition, while the SDNN and alpha were both negatively correlated with the Borg rating of perceived exertion (RPE) scale value, it seemed that the LF-to-HF power ratio might not have substantial impact on the Borg value, suggesting that the SDNN and a may be further used as features to detect the cardiac stress status during the physical exercise. We further approached this detection problem by applying a linear discriminant analysis (LDA) to both feature candidates for the task of cardiac stress stratification. As a result, a time-varying parameter, referred to as the cardiac stress measure (CSM), is developed for quantitatively on-line measuring and stratifying cardiac stress status. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们旨在寻求在心率变异性(HRV)和心率(HR)动态方面测量心脏压力的不同方式,并开发一种新颖的指数,可以有效地总结这些措施的持续反映的信息在体育锻炼期间定量表征心脏应激状态。 HRV的标准偏差,频谱测量和基于非线性的反向波动分析(DFA)的基于HR动态的分形行为测量,所有来自循环运动的受试者的窗口心电图(ECG)数据的RR时间序列都评估了。我们在测试中招募了11个年轻的健康科目。要求每个受试者在踩踏测试期间在恒定负载下保持固定速度。我们获得了正常间隔(SDNN)的标准偏差的运行估计,分别为HRV的高保真功率谱密度(PSD)和DFA缩放指数A。然后进行这些措施的趋势分析和多变量线性回归分析。通过我们的分析产生的数值实验结果表明,在循环运动期间看到SDNN和A的减少,而标准较低频率与HRV的较高频率(LF-TO-HF)光谱功率比没有显着相关性运动强度。此外,虽然SDNN和Alpha与感知的劳动(RPE)比例值的Borg额定值呈负相关,但似乎LF-o-HF功率比可能对Borg值产生大量影响,表明SDNN A可以进一步用作检测体育锻炼期间的心脏应激状态的特征。通过将线性判别分析(LDA)应用于心脏应激分层任务的特征候选,我们进一步接近该检测问题。结果,用于定量在线测量和分层心脏应激状态开发了时变参数。 (c)2015 Elsevier Ltd.保留所有权利。

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