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连续超短期心率变异性以追踪运动期间及运动后自主神经系统的动态变化。

Consecutive ultra-short-term heart rate variability to track dynamic changes in autonomic nervous system during and after exercise.

作者信息

Chen Xiang, Yao Ruijie, Yin Gezhen, Li Jin

机构信息

Key Laboratory of Biomedical Information Engineering of Ministry of Education, Institute of Biomedical Engineering, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi, People's Republic of China.

出版信息

Physiol Meas. 2017 Jun 22;38(7):1384-1395. doi: 10.1088/1361-6579/aa52b3.

Abstract

OBJECTIVE

Quantitative measurement of the dynamic changes in autonomic nervous system (ANS) during and after exercise has great significance in clinical, sports training and other fields. A consecutive ultra-short-term (30 s, UST) heart rate variability (HRV) method was proposed to track the exercise-induced autonomic control of heart rate (HR).

APPROACH

Twenty-three healthy young men participated in the study. The first four stages of the Modified Bruce Protocol (S0-S3) were performed. Six HRV indices, i.e. HF (power of high frequency ranged from 0.15 to 0.4 Hz), LF (power of low frequency ranged from 0.04 to 0.15 Hz), LF/HF, SD1 and SD2 of Poincaré plot, and SD2/SD1, over 30 s were calculated every 5 s over 3 min RR time series during, as well as after, exercise.

MAIN RESULTS

The results showed that during exercise, SD1, SD2, HF and LF dropped down quickly and tended to stabilize. Particularly, SD1 and HF showed a slight upward trend in the lower three stages while the declining time of SD2 in S3 lasted longer than the other stages. SD2/SD1 increased rapidly first and then decreased slowly. The values of SD2/SD1 in S3 remained higher than those in the other stages. After exercise, SD1, SD2, HF and LF kept increasing first and then declined slowly or fluctuated with decaying amplitudes. SD2/SD1 increased initially, then decreased and fluctuated slightly.

SIGNIFICANCE

Compared with the indices in frequency domain, the Poincaré indices were more sensitive and accurate in UST measurement of ANS during exercise. The results demonstrated that the UST method could characterize the dynamic changing tendency of ANS during and after exercise and quantify the differences of changes in ANS induced by exercise with different intensities. In particular, the vagal branch functioned dominantly in controlling HR in S0 but the effect of the sympathetic branch on HR enhanced with the increase of exercise intensity. In addition, the transient changes of ANS related with the sudden onset of exercise could also be reflected, despite perhaps being limited by the computation window width to some extent. Thus, the consecutive UST Poincaré indices could provide a feasible and simple method to measure quantitatively the exercise-induced dynamic changes in ANS.

摘要

目的

定量测量运动期间及运动后自主神经系统(ANS)的动态变化在临床、运动训练等领域具有重要意义。提出了一种连续超短期(30秒,UST)心率变异性(HRV)方法来追踪运动引起的心率(HR)自主控制。

方法

23名健康青年男性参与了该研究。进行了改良布鲁斯运动试验的前四个阶段(S0 - S3)。在运动期间及运动后3分钟的RR时间序列中,每隔5秒计算6个HRV指标,即高频功率(HF,范围为0.15至0.4赫兹)、低频功率(LF,范围为0.04至0.15赫兹)、LF/HF、庞加莱图的SD1和SD2以及SD2/SD1,持续30秒。

主要结果

结果表明,运动期间,SD1、SD2、HF和LF迅速下降并趋于稳定。特别是,SD1和HF在较低的三个阶段呈轻微上升趋势,而S3中SD2的下降时间比其他阶段持续更长。SD2/SD1先迅速增加,然后缓慢下降。S3中SD2/SD1的值高于其他阶段。运动后,SD1、SD2、HF和LF先持续增加,然后缓慢下降或振幅衰减波动。SD2/SD1最初增加,然后下降并略有波动。

意义

与频域指标相比,庞加莱指标在运动期间ANS的UST测量中更敏感、准确。结果表明,UST方法可以表征运动期间及运动后ANS的动态变化趋势,并量化不同强度运动引起的ANS变化差异。特别是,迷走神经分支在S0中对HR控制起主导作用,但交感神经分支对HR的影响随着运动强度的增加而增强。此外,尽管可能在一定程度上受计算窗口宽度限制,但仍可反映与运动突然开始相关的ANS瞬态变化。因此,连续的UST庞加莱指标可为定量测量运动引起的ANS动态变化提供一种可行且简单的方法。

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