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A Method for the Evaluation of Anaerobic Threshold Based on Heart Rate Dynamics during Incremental Exercise Test and Recovery

机译:一种基于增量运动测试和恢复过程中心率动态的无氧阈值评估方法

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A new graphical method for determining the anaerobic threshold (AT), which has been experimentally tested in testing the maximal aerobic capacity in 46 cyclic sports athletes (mean age, 20.3 ± 3.6 years; body weight, 68.3 ± 10.4 kg). The gas exchange indices, the heart rate, the time of onset (from the beginning of the test) of AT by pulmonary gas exchange ratios, the non-metabolic CO~(2)excess, the concentration of lactate in capillary blood, and the time of onset of AT determined by the proposed graphical method by the parameters of the pulsogram obtained during the test and 10-min recovery were determined. Two different protocols of load change—the incremental ramp test on a treadmill and the incremental step test on a bicycle ergometer—were used. Regardless of the protocol and the load type, statistical analysis revealed no significant differences between the results of AT measurements in the same athletes by the gas exchange and lactate dynamics indices, on the one hand, and by using the graphical method by the pulsogram parameters, on the other hand. In the test with a stepwise increase in load on a bicycle ergometer, as well as in the test with a smoothly increasing load on a running treadmill, the indices obtained at the AT that was determined by using the graphical method highly correlated with the indices obtained at the AT that was determined by analyzing the dynamics of pulmonary ventilation, non-metabolic CO~(2)excess, and lactate concentration ( p < 0.05). The proposed method does not require the use of sophisticated equipment and invasive procedures and can be widely used in sports and fitness practice.
机译:一种新的确定无氧阈值(AT)的图形方法,已通过实验测试了46名周期性运动运动员的最大有氧能力(平均年龄20.3±3.6岁;体重68.3±10.4 kg)。气体交换指数,心率,AT发作时间(从测试开始)通过肺部气体交换比率,非代谢CO〜(2)过量,毛细血管血液中乳酸的浓度以及通过在试验期间获得的搏动图参数,通过建议的图形方法确定AT的发作时间,并确定10分钟的恢复时间。使用了两种不同的负载变化协议,即跑步机上的增量坡度测试和自行车测功机上的增量步长测试。不论协议和负载类型如何,统计分析都表明,一方面,通过气体交换和乳酸动力学指标,以及通过使用脉搏图参数的图形化方法,在同一位运动员的AT测量结果之间没有显着差异,另一方面。在自行车测功机上负载逐步增加的测试中,以及在跑步机上平稳增加负载的测试中,在AT处获得的指标(使用图形方法确定)与所获得的指标高度相关通过分析肺通气,非代谢CO〜(2)过量和乳酸浓度的动态变化确定AT的浓度(p <0.05)。所提出的方法不需要使用复杂的设备和侵入性程序,并且可以广泛地用于运动和健身实践中。

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