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Does the Temporal Asymmetry of Short-Term Heart Rate Variability Change during Regular Walking? A Pilot Study of Healthy Young Subjects

机译:常规行走过程中短期心率变异性的时间不对称是否改变?健康青年受试者的初步研究

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摘要

The acceleration and deceleration patterns in heartbeat fluctuations distribute asymmetrically, which is known as heart rate asymmetry (HRA). It is hypothesized that HRA reflects the balancing regulation of the sympathetic and parasympathetic nervous systems. This study was designed to examine whether altered autonomic balance during exercise can lead to HRA changes. Sixteen healthy college students were enrolled, and each student undertook two 5-min ECG measurements: one in a resting seated position and another while walking on a treadmill at a regular speed of 5 km/h. The two measurements were conducted in a randomized order, and a 30-min rest was required between them. RR interval time series were extracted from the 5-min ECG data, and HRA (short-term) was estimated using four established metrics, that is, Porta's index (PI), Guzik's index (GI), slope index (SI), and area index (AI), from both raw RR interval time series and the time series after wavelet detrending that removes the low-frequency component of <~0.03 Hz. Our pilot data showed a reduced PI but unchanged GI, SI, and AI during walking compared to resting seated position based on the raw data. Based on the wavelet-detrended data, reduced PI, SI, and AI were observed while GI still showed no significant changes. The reduced PI during walking based on both raw and detrended data which suggests less short-term HRA may underline the belief that vagal tone is withdrawn during low-intensity exercise. GI may not be sensitive to short-term HRA. The reduced SI and AI based on detrended data suggest that they may capture both short- and long-term HRA features and that the expected change in short-term HRA is amplified after removing the trend that is supposed to link to long-term component. Further studies with more subjects and longer measurements are warranted to validate our observations and to examine these additional hypotheses.
机译:心跳波动中的加速和减速模式不对称分布,这称为心率不对称(HRA)。假设HRA反映了交感神经系统和副交感神经系统的平衡调节。本研究旨在检查运动过程中自主神经平衡的改变是否会导致HRA改变。共有16名健康的大学生参加,每名学生进行了两次5分钟的ECG测量:一个处于坐姿,另一次是在跑步机上以5千米/小时的常规速度行走。两次测量以随机顺序进行,并且两次之间需要休息30分钟。从5分钟的ECG数据中提取RR间隔时间序列,并使用四个已建立的指标(即Porta指数(PI),Guzik指数(GI),斜率指数(SI)和HRS)来估计HRA(短期)。原始RR间隔时间序列和小波去趋势后去除了<〜0.03 Hz低频分量的时间序列中的面积指数(AI)。根据原始数据,我们的飞行员数据显示,与静止坐姿相比,行走过程中PI减少,但GI,SI和AI不变。根据小波趋势数据,观察到PI,SI和AI降低,而GI仍无明显变化。根据原始数据和趋势数据,步行过程中PI降低,这表明短期HRA减少可能表明,在低强度运动中迷走神经张力消失了。胃肠道可能对短期HRA不敏感。基于去趋势数据的SI和AI降低表明,它们可能同时捕获了短期和长期HRA特征,并且在消除了与长期构成因素相关的趋势后,短期HRA的预期变化得到了放大。有必要对更多的主题和更长的测量值进行进一步研究,以验证我们的观察结果并检查这些其他假设。

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