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最大冲刺运动后平台期心率变异性的符号分析

Symbolic Analysis of the Heart Rate Variability During the Plateau Phase Following Maximal Sprint Exercise.

作者信息

Storniolo Jorge L, Cairo Beatrice, Porta Alberto, Cavallari Paolo

机构信息

Department of Pathophysiology and Transplantation, Human Physiology Section, University of Milan, Milan, Italy.

Department of Biomedical Sciences for Health, University of Milan, Milan, Italy.

出版信息

Front Physiol. 2021 Mar 23;12:632883. doi: 10.3389/fphys.2021.632883. eCollection 2021.

Abstract

Cardiac autonomic control is commonly assessed the analysis of fluctuations of the temporal distance between two consecutive R-waves (RR). Cardiac regulation assessment following high intensity physical exercise is difficult due to RR non-stationarities. The very short epoch following maximal sprint exercise when RR remains close to its lowest value, i.e., the PLATEAU, provides the opportunity to evaluate cardiac regulation from stationary RR sequences. The aim of the study is to evaluate cardiac autonomic control during PLATEAU phase following 60-m maximal sprint and compare the results to those derived from sequences featuring the same length as the PLATEAU and derived from pre-exercise and post-exercise periods. These sequences were referred to as PRE and POST sequences. RR series were recorded in 21 subjects (age: 24.9 ± 5.1 years, 15 men and six women). We applied a symbolic approach due to its ability to deal with very short RR sequences. The symbolic approach classified patterns formed by three RRs according to the sign and number of RR variations. Symbolic markers were compared to more classical time and frequency domain indexes. Comparison was extended to simulated signals to explicitly evaluate the suitability of methods to deal with short variability series. A surrogate test was applied to check the null hypothesis of random fluctuations. Over simulated data symbolic analysis was able to separate dynamics with different spectral profiles provided that the frame length was longer than 10 cardiac beats. Over real data the surrogate test indicated the presence of determinism in PRE, PLATEAU, and POST sequences. We found that the rate of patterns with two variations with unlike sign increased during PLATEAU and in POST sequences and the frequency of patterns with no variations remained unchanged during PLATEAU and decreased in POST compared to PRE sequences. Results indicated a sustained sympathetic control along with an early vagal reactivation during PLATEAU and a shift of the sympathovagal balance toward vagal predominance in POST compared to PRE sequences. Time and frequency domains markers were less powerful because they were dominated by the dramatic decrease of RR variance during PLATEAU.

摘要

心脏自主控制通常通过分析两个连续R波之间的时间间隔(RR)波动来评估。由于RR的非平稳性,高强度体育锻炼后的心脏调节评估较为困难。在最大冲刺运动后RR保持接近其最低值的极短时间段,即平台期,为从平稳的RR序列评估心脏调节提供了机会。本研究的目的是评估60米最大冲刺后平台期的心脏自主控制,并将结果与从与平台期长度相同的序列以及运动前和运动后时期得出的结果进行比较。这些序列被称为PRE和POST序列。在21名受试者(年龄:24.9±5.1岁,15名男性和6名女性)中记录了RR系列。由于其能够处理非常短的RR序列,我们应用了一种符号方法。该符号方法根据RR变化的符号和数量对由三个RR形成的模式进行分类。将符号标记与更经典的时域和频域指标进行比较。比较扩展到模拟信号,以明确评估处理短变异性序列方法的适用性。应用替代检验来检验随机波动的零假设。在模拟数据上,只要帧长度超过10个心跳,符号分析就能分离具有不同频谱特征的动态。在真实数据上,替代检验表明PRE、平台期和POST序列中存在确定性。我们发现,在平台期和POST序列中,具有两个不同符号变化的模式发生率增加,而在平台期无变化的模式频率保持不变,与PRE序列相比,POST序列中该频率降低。结果表明,在平台期交感神经持续控制以及迷走神经早期重新激活,与PRE序列相比,POST序列中交感迷走平衡向迷走神经占优势转变。时域和频域标记的作用较小,因为它们在平台期被RR方差的急剧下降所主导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52b6/8021730/c3d5c7ba10d0/fphys-12-632883-g001.jpg

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