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T-wave and heart rate variability changes to assess training in world-class athletes

机译:T波和心率变异性变化可评估世界级运动员的训练

摘要

Purpose: A decrease of electrocardiographic T-wave voltage with increasing training loads has been reported in elite endurance athletes and ascribed to training-related adaptation in sympathetic activity to the ventricles. A switch from vagal to sympathetic predominance in sino-atrial node regulation on going from low to peak training load has been reported in world-class rowers. In this study on world-class endurance athletes, we tested the hypothesis that training-induced variations in T-wave amplitude at higher training loads are paralleled by changes in HR spectral profile. Methods: We studied eight male rowers of the Italian national team in the season culminating with the Rowing World Championship. Athletes were evaluated at 50 and 100% of training load, similar to 20 d before the World Championship, and during the World Championship, when the intensity was markedly reduced. We assessed T-wave maximum amplitude in chest lead V6 and cardiac autonomic regulation by power spectral analysis of R-R interval variability. Results: The increase in training load from 50 to 100% was accompanied by a significant decrease in high frequency and a significant increase in low-frequency R-R variability (in normalized units) with a concomitant significant decrease in T-wave amplitude (muV). Reduction in training load during the World Championship resulted in a return of spectral profile to the level observed at 50% training load and in a partial recovery of T-wave amplitude. HR did not change significantly. Conclusions: In high-performance world-class athletes, training load simultaneously affects both ventricular repolarization and HR variability patterns possibly through variations in cardiac sympathetic modulation to the ventricles and the sino-atrial node. Information on concomitant changes in ventricular repolarization and autonomic cardiac regulation might be employed to tailor training protocols of elite athletes.
机译:目的:据报道,在耐力运动员中,随着训练负荷的增加,心电图T波电压会降低,这归因于训练相关的适应性对心室活动的适应。在世界一流的划船者中,有报道称从低负荷到峰值训练负荷,窦房结调节从迷走神经向交感神经为主。在这项有关世界一流耐力运动员的研究中,我们测试了以下假设:在较高的训练负荷下,训练引起的T波振幅变化与HR频谱图的变化平行。方法:在赛季末的世界赛艇锦标赛上,我们研究了意大利国家队的八位男性赛艇运动员。在训练负荷为50%和100%的情况下对运动员进行了评估,这与世锦赛之前以及世锦赛期间强度明显降低的20天相似。我们通过功率谱分析R-R间隔变异性来评估胸导联V6中的T波最大振幅和心脏自主调节。结果:训练负荷从50%增加到100%,伴随着高频的显着降低和低频R-R变异性的显着增加(以标准化单位表示),同时T波振幅(muV)显着降低。世锦赛期间训练负荷的减少导致频谱分布恢复到训练负荷为50%时所观察到的水平,并使T波振幅部分恢复。人力资源没有明显变化。结论:在高性能的世界级运动员中,训练负荷可能同时影响心室和窦房结的心脏交感神经调节,从而同时影响心室复极化和HR变异性模式。有关心室复极和自主性心脏调节的同时变化的信息可用于定制优秀运动员的训练方案。

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