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Reflection of heart rate regulation on linear and nonlinear heart rate variability measures

机译:心率调节对线性和非线性心率变异性测度的反映

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The aim of this study was to examine the dependence of heart rate variability (HRV) measures on RR interval length and to find out relationships between linear and nonlinear measures. The spectral powers in very low (VLF), low (LF) and high (HF) frequency regions, short-term scaling exponent a, and sample entropy (SampEn) were determined. All spectral powers increased with increasing RR interval length until they reached a plateau. Neighbouring spectral powers were strongly correlated. The largest fraction of the spectrum consisted of VLF (from about 40 to 95%) and the smallest of HF, although HF was most sensitive to changes in RR interval length. SampEn is also increased with increasing RR interval, reaching a plateau. The dependence of alpha(1) on RR showed a deflection point at 0.5 s. Nonlinear measures can be expressed by spectral powers: a I by a linear function of In(LF/HF) and SampEn by a quadratic function of In HE We concluded that during the day an increase of HR up to 120 beats min(-1) was reflected in a reduction in HF and LF and to a smaller extent in VLF and by decreased complexity and increased correlation in RR interval series. In sleep, HRV measures are at a plateau. We suggest that below intrinsic value, HR is regulated mainly by changes of parasympathetic activity, reflected in linear and nonlinear HRV measures.
机译:这项研究的目的是检查心率变异性(HRV)措施对RR间隔长度的依赖性,并找出线性和非线性措施之间的关系。确定了非常低(VLF),低(LF)和高(HF)频率区域的频谱功率,短期缩放指数a和样本熵(SampEn)。所有频谱功率都随着RR间隔长度的增加而增加,直到达到平稳状态。邻近的频谱功率高度相关。频谱的最大部分由VLF(约40%至95%)组成,而HF则最小,尽管HF对RR间隔长度的变化最敏感。 SampEn也随着RR间隔的增加而增加,达到平稳状态。 alpha(1)对RR的依赖性显示偏转点为0.5 s。非线性测度可以用频谱功率表示:一个In(LF / HF)的线性函数的I和一个In He的二次函数的SampEn的电磁功率我们得出结论,白天HR的增加最多可达120次,min(-1)这反映在HF和LF的减少以及VLF的较小程度,以及RR间隔序列复杂性的降低和相关性的增加上。在睡眠中,HRV措施处于平稳状态。我们认为,低于内在价值时,HR主要受副交感神经活动的变化调节,反映在线性和非线性HRV量度中。

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