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The Relationship between VO2max Power Management and Increased Running Speed: Towards Gait Pattern Recognition through Clustering Analysis

机译:VO2MAX电源管理与运行速度增加的关系:通过聚类分析实现步态模式识别

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摘要

Triathlon has become increasingly popular in recent years. In this discipline, maximum oxygen consumption (VO2max) is considered the gold standard for determining competition cardiovascular capacity. However, the emergence of wearable sensors (as Stryd) has drastically changed training and races, allowing for the more precise evaluation of athletes and study of many more potential determining variables. Thus, in order to discover factors associated with improved running efficiency, we studied which variables are correlated with increased speed. We then developed a methodology to identify associated running patterns that could allow each individual athlete to improve their performance. To achieve this, we developed a correlation matrix, implemented regression models, and created a heat map using hierarchical cluster analysis. This highlighted relationships between running patterns in groups of young triathlon athletes and several different variables. Among the most important conclusions, we found that high VO2max did not seem to be significantly correlated with faster speed. However, faster individuals did have higher power per kg, horizontal power, stride length, and running effectiveness, and lower ground contact time and form power ratio. VO2max appeared to strongly correlate with power per kg and this seemed to indicate that to run faster, athletes must also correctly manage their power.
机译:近年来,铁人三项越来越受欢迎。在这一学科中,最大氧气消耗(VO2MAX)被认为是确定竞争心血管能力的金标准。然而,可穿戴传感器的出现(如Stryd)彻底改变了训练和种族,允许对运动员进行更精确的评估和对许多潜在的确定变量的研究。因此,为了发现与提高运行效率相关的因素,我们研究了哪些变量与增加的速度相关。然后,我们开发了一种方法来识别可以允许每个人运动员提高其性能的相关运行模式。为实现这一点,我们开发了一种相关矩阵,实现了回归模型,并使用分层集群分析创建了热图。这种突出显示的幼年三项运动员和几个不同变量的跑步模式之间的关系。在最重要的结论中,我们发现高VO2MAX似乎与更快的速度显着相关。然而,更快的个体确实具有较高的功率,每公斤,水平功率,步幅长度和运行效果,以及更低的地面接触时间和形成功率比。 VO2MAX似乎与每公斤的功率强烈相关,这似乎表明要更快地运行,运动员还必须正确管理他们的权力。

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