Division of Sport, Health and Exercise Sciences, Department of Life Sciences, Brunel University London , Uxbridge, UK.
Sports Biomech. 2021 Feb;20(1):3-21. doi: 10.1080/14763141.2020.1721737. Epub 2020 Mar 23.
The countermovement jump is commonly used to assess an athlete's neuromuscular capacity. The aim of this study was to identify the mechanism behind the strong correlation between jump height and mechanical power in a countermovement jump. Three athletes each performed between 47 and 60 maximal-effort countermovement jumps on a force platform. For all three athletes, peak mechanical power and average mechanical power were strongly correlated with jump height ( = 0.54-0.90). The correlation between jump height and peak power was largely determined by the correlation between jump height and the velocity at peak power ( = 0.83-0.94) and was not related to the correlation between jump height and the ground reaction force at peak power ( = -0.20-0.18). These results confirm that the strong correlation between jump height and power is an artefact arising from how power is calculated. Power is a compound variable calculated from the product of instantaneous ground reaction force and instantaneous velocity, and application of statistical theory shows that the correlation between jump height and power is artificially inflated by the near-perfect correlation between jump height and the velocity at peak power. Despite this finding, mechanical power might still be useful in assessing the neuromuscular capacity of an athlete.
反跳式跳跃常用于评估运动员的神经肌肉能力。本研究旨在确定反跳式跳跃中跳跃高度与机械功率之间强相关性的背后机制。三名运动员均在力量平台上完成了 47 到 60 次最大努力的反跳式跳跃。对于所有三名运动员,峰值机械功率和平均机械功率与跳跃高度高度高度高度相关(=0.54-0.90)。跳跃高度与峰值功率之间的相关性主要取决于跳跃高度与峰值功率时的速度之间的相关性(=0.83-0.94),与跳跃高度与峰值功率时的地面反作用力之间的相关性无关(=0.20-0.18)。这些结果证实,跳跃高度与功率之间的强相关性是由于功率的计算方式造成的人为假象。功率是通过瞬时地面反作用力和瞬时速度的乘积计算得出的,统计学理论的应用表明,跳跃高度与功率之间的相关性因跳跃高度与峰值功率时的速度之间近乎完美的相关性而被人为夸大。尽管有此发现,但机械功率在评估运动员的神经肌肉能力方面可能仍然有用。