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A New Mathematical Approach to Explore the Post-exercise Recovery Process and Its Applicability in a Cold Water Immersion Protocol

机译:一种新的数学方法来探讨锻炼后恢复过程及其在冷水浸入方案中的适用性

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The objective of this study was to propose a mathematical model to analyze the post-training recovery of perceptive, functional, metabolic, and autonomic parameters from the use of cold water immersion (CWI) through isolated and combined analysis. Following simulated training, 64 male soccer players were randomized into an experimental group (EG: CWI, 13 +/- 1 degrees C; 15 minutes) and a control group (CG: passive recovery; 15 minutes). Perceptive (soreness and perception of recovery), autonomic (heart rate variability [HRV]), metabolic (lactate concentration), and functional parameters (squat jump, T agility test, sprint test, 40-second test, and maximal voluntary isometric contraction) were analyzed before and at specific moments after training (without exceeding 2 hours after training). The variables were analyzed using the raw data, dichotomization of each variable (isolated analysis), and through a mathematical model using the combination of all parameters analyzed (combined analysis). The combined analysis did not demonstrate better efficacy of the EG compared with the CG(69.17 and 63.4%, p = 0.09). In the isolated analysis, a chance of the technique being better was observed in the metabolic parameter at 1 and 2 hours after training (odds ratio, 95% confidence interval = 3.75 [1.01-13.88] and 11.11 [1.25-98.49]), respectively, and in the autonomic parameter at 40-45 minutes after training (4.4 [1.09-17.67]). For the raw data, all parameters analyzed presented recovery by 2 hours after training for both groups. Based on the proposed mathematical model, it is concluded that CWI is not better than the control condition. However, considering the analysis of variables in isolation, the technique presents a better chance of recovery for blood lactate concentration and HRV.
机译:本研究的目的是提出一种数学模型,分析通过使用冷水浸没(CWI)通过分离和组合分析来分析感知,功能性,代谢和自主主义参数的训练后恢复。在模拟培训之后,64名男性足球运动员随机分为实验组(例如:CWI,13 +/- 1℃; 15分钟)和对照组(CG:被动恢复; 15分钟)。感知(恢复疼痛和感知),自主神经率(心率变异性[HRV]),代谢(乳酸浓度)和功能参数(Squat跳跃,T敏捷试验,冲刺试验,40秒测试和最大自愿等距收缩)在训练后之前和在特定时刻进行分析(不超过培训后2小时)。使用原始数据,每个变量的二分度(隔离分析)和使用分析的组合(组合分析)的组合来分析变量。组合分析未表明与CG(69.17和63.4%相比的更好的疗效(69.17和63.4%,p = 0.09)。在孤立的分析中,在训练后1和2小时的代谢参数中观察到更好的技术的机会(次数比例,95%置信区间= 3.75 [1.01-13.88]和11.11 [1.25-98.49])在培训后40-45分钟的自主参数(4.4 [1.09-17.67])。对于原始数据,对两个组进行培训后,分析的所有参数都会在2小时内呈现恢复。基于所提出的数学模型,得出结论,CWI并不比控制条件更好。然而,考虑到分离的变量分析,该技术具有更好的血液乳酸浓度和HRV恢复的机会。

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