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Effects of a Short-Term Cycling Interval Session and Active Recovery on Non-Linear Dynamics of Cardiac Autonomic Activity in Endurance Trained Cyclists

机译:短期骑车间隔时间和主动恢复对耐力训练的骑自行车者心脏自主神经活动非线性动力学的影响

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摘要

Measurement of the non-linear dynamics of physiologic variability in a heart rate time series (HRV) provides new opportunities to monitor cardiac autonomic activity during exercise and recovery periods. Using the Detrended Fluctuation Analysis (DFA) technique to assess correlation properties, the present study examines the influence of exercise intensity and recovery on total variability and complexity in the non-linear dynamics of HRV. Sixteen well-trained cyclists performed interval sessions with active recovery periods. During exercise, heart rate (HR) and beat-to-beat (RR)-intervals were recorded continuously. HRV time domain measurements and fractal correlation properties were analyzed using the short-term scaling exponent alpha1 of DFA. Lactate (La) levels and the rate of perceived exertion (RPE) were also recorded at regular time intervals. HR, La, and RPE showed increased values during the interval blocks (p < 0.05). In contrast, meanRR and DFA-alpha1 showed decreased values during the interval blocks (p < 0.05). Also, DFA-alpha1 increased to the level in the warm-up periods during active recovery (p < 0.05) and remained unchanged until the end of active recovery (p = 1.000). The present data verify a decrease in the overall variability, as well as a reduction in the complexity of the RR-interval-fluctuations, owing to increased organismic demands. The acute increase in DFA-alpha1 following intensity-based training stimuli in active recovery may be interpreted as a systematic reorganization of the organism with increased correlation properties in cardiac autonomic activity in endurance trained cyclists.
机译:心率时间序列(HRV)中生理变异性非线性动力学的测量提供了监测运动和恢复期间心脏自主神经活动的新机会。本研究使用去趋势波动分析(DFA)技术评估相关性,研究了运动强度和恢复对HRV非线性动力学中总变异性和复杂性的影响。 16名训练有素的自行车手进行了间歇锻炼,活跃的恢复期。在运动期间,连续记录心率(HR)和心跳(RR)间隔。使用DFA的短期缩放指数alpha1分析了HRV时域测量和分形相关特性。还定期记录乳酸(La)水平和感知劳累率(RPE)。 HR,La和RPE在间隔时间段内显示增加的值(p <0.05)。相反,meanRR和DFA-alpha1在间隔块期间显示出降低的值(p <0.05)。此外,DFA-alpha1在主动恢复过程中的预热期增加到水平(p <0.05),并保持不变,直到主动恢复结束(p = 1.000)。目前的数据证实,由于增加的生物需求,总体变异性降低,RR间隔波动的复杂性降低。在主动恢复中基于强度的训练刺激后,DFA-alpha1的急剧增加可能被解释为对耐力训练的骑自行车者的心脏自主神经活动具有相关性增强的生物体的系统重组。

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