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Complex Demodulation of Heart Rate Variability during Parabolic Flight: an Exploratory Study

机译:抛物线飞行期间心率变异性复杂解调:探索性研究

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The aim of this study was to evaluate the usefulness of complex demodulation (CDM) in assessing frequency components of heart rate variability (HRV) in the setting of dynamic amplitude variations. First, analysis of simulated data showed that the upper limit of rapid amplitude variations corresponded to a period of less than 16s in order to allow a 95% reliable LF and HF estimation. Second, in terms of estimating the mean LF-to-HF ratio in healthy subjects, CDM was equivalent to FFT power spectrum analysis (r = .97; p<0.001). Finally, CDM was applied during parabolic flight to determine time-dependent responses of respiratory sinus arrhythmia (RSA) as a function of gravity. Postural differences in both heart rate and RSA were augmented during hypergravity conditions and abolished at 0Gz of parabolic flight. These results show that CDM can be used to provide a continuous reliable assessment of dynamic autonomic cardiovascular control.
机译:本研究的目的是评估复杂解调(CDM)在动态幅度变化的设置中评估心率变异性(HRV)的频率分量的有用性。首先,对模拟数据的分析表明,快速幅度变化的上限对应于少于16个,以允许95%可靠的LF和HF估计。其次,就估计健康受试者的平均值为-HF比率而言,CDM相当于FFT功率谱分析(R = .97; P <0.001)。最后,在抛物线飞行期间应用CDM以确定呼吸道心律失常(RSA)的时间依赖性反应作为重力的函数。心率和RSA的姿势差异在超高的情况下增强,并在0Gz抛物线飞行中被废除。这些结果表明,CDM可用于提供对动态自主心血管控制的连续可靠评估。

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