Gronwald Thomas, Schaffarczyk Marcelle, Fohrmann Dominik, Hoos Olaf, Hollander Karsten
Institute of Interdisciplinary Exercise Science and Sports Medicine, MSH Medical School Hamburg, Hamburg, Germany.
G-Lab, Faculty of Applied Sport Sciences and Personality, BSP Business and Law School, Berlin, Germany.
Physiol Rep. 2025 Feb;13(3):e70177. doi: 10.14814/phy2.70177.
Aim was to evaluate alterations of the non-linear short-term scaling exponent alpha1 of detrended fluctuation analysis (DFAa1) of heart rate (HR) variability (HRV) as a sensitive marker for assessing global physiological demands during multiple running intervals. As a secondary analysis, agreement of ECG-derived respiratory frequency (EDR) compared to respiratory frequency (RF) derived from the metabolic cart was evaluated with the same chest belt device. Fifteen trained female and male long-distance runners completed four running bouts over 5 min on a treadmill at marathon pace. During the last 3 min of each bout gas exchange data and a single-channel ECG for the determination of HR, DFAa1 of HRV, EDR and RF were analyzed. Additionally, blood lactate concentration (BLC) was determined and rating of perceived exertion (RPE) was requested. DFAa1, oxygen consumption, BLC, and RPE showed stable behaviors comparing the running intervals. Only HR (p < 0.001, d = 0.17) and RF (p = 0.012, d = 0.20) indicated slight increases with small effect sizes. In addition, results point towards inter-individual differences in all internal load metrics. The comparison of EDR with RF during running revealed high correlations (r = 0.80, p < 0.001, ICC = 0.87) and low mean differences (1.8 ± 4.4 breaths/min), but rather large limits of agreement with 10.4 to -6.8 breaths/min. Results show the necessity of EDR methodology improvement before being used in a wide range of individuals and sports applications. Relationship of DFAa1 to other internal load metrics, including RF, in quasi-steady-state conditions bears the potential for further evaluation of exercise prescription and may enlighten decoupling mechanisms during prolonged exercise bouts.
目的是评估心率变异性(HRV)的去趋势波动分析(DFAa1)中的非线性短期标度指数α1的变化,作为评估多个跑步间歇期间整体生理需求的敏感指标。作为次要分析,使用相同的胸带设备评估了心电图衍生的呼吸频率(EDR)与代谢车衍生的呼吸频率(RF)的一致性。15名训练有素的男女长跑运动员在跑步机上以马拉松配速完成了4次5分钟的跑步试验。在每次试验的最后3分钟,分析气体交换数据和用于测定心率、HRV的DFAa1、EDR和RF的单通道心电图。此外,测定血乳酸浓度(BLC)并要求进行主观用力程度(RPE)评级。比较各跑步间歇期,DFAa1、耗氧量、BLC和RPE表现出稳定的行为。只有心率(p < 0.001,d = 0.17)和RF(p = 0.012,d = 0.20)显示出小效应量的轻微增加。此外,结果表明所有内部负荷指标存在个体间差异。跑步期间EDR与RF的比较显示出高度相关性(r = 0.80,p < 0.001,ICC = 0.87)和低平均差异(1.8±4.4次/分钟),但一致性界限较大,为10.4至-6.8次/分钟。结果表明,在广泛应用于个体和体育领域之前,EDR方法需要改进。在准稳态条件下,DFAa1与包括RF在内的其他内部负荷指标的关系具有进一步评估运动处方的潜力,并可能揭示长时间运动期间的解耦机制。