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当跳跃高度不能很好地反映下肢最大力量输出时:理论论证、实验证据与实际解决方案。

When Jump Height is not a Good Indicator of Lower Limb Maximal Power Output: Theoretical Demonstration, Experimental Evidence and Practical Solutions.

机构信息

Université Côte d'Azur, LAMHESS, Nice, France.

Sports Performance Research Institute New Zealand, Auckland University of Technology, Auckland, New Zealand.

出版信息

Sports Med. 2019 Jul;49(7):999-1006. doi: 10.1007/s40279-019-01073-1.

Abstract

Lower limb external maximal power output capacity is a key physical component of performance in many sports. During squat jump and countermovement jump tests, athletes produce high amounts of mechanical work over a short duration to displace their body mass (i.e. the dimension of mechanical power). Thus, jump height has been frequently used by the sports science and medicine communities as an indicator of the power output produced during the jump and by extension, of maximal power output capacity. However, in this article, we contend that squat jump and countermovement jump height are not systematically good indicators of power output produced during the jump and maximal power output capacity. To support our opinion, we first detail why, theoretically, jump height and maximal power output capacity are not fully related. Specifically, we demonstrate that individual body mass, push-off distance, optimal loading and the force-velocity profile confound the jump height-power relationship. We also discuss the relationship between squat jump or countermovement jump height and maximal power output capacity measured with a force plate based on data reported in the literature, which added to our own experimental evidence. Finally, we discuss the limitations of existing practical solutions (regression-based estimation equations and allometric scaling), and advocate using a valid, reliable and simple field-based procedure to compute individual power output produced during the jump and maximal power output capacity directly from jump height, body mass and push-off distance. The latter may allow researchers and practitioners to reduce bias in their assessment of lower limb mechanical power output by using jump height as an input with a simple yet accurate computation method, and not as the first/only variable of interest.

摘要

下肢外部最大功率输出能力是许多运动项目表现的关键身体组成部分。在深蹲跳和反向跳测试中,运动员在短时间内产生大量机械功来移动身体质量(即机械功率的维度)。因此,跳跃高度经常被运动科学和医学领域用作跳跃期间产生的功率输出的指标,并且可以扩展到最大功率输出能力。然而,在本文中,我们认为深蹲跳和反向跳的高度并不能系统地很好地指示跳跃期间产生的功率输出和最大功率输出能力。为了支持我们的观点,我们首先详细说明为什么从理论上讲,跳跃高度和最大功率输出能力并不是完全相关的。具体来说,我们证明了个体体重、蹬伸距离、最佳负荷和力-速度曲线使跳跃高度与功率的关系变得复杂。我们还根据文献中报告的数据讨论了深蹲跳或反向跳高度与基于力量板测量的最大功率输出能力之间的关系,这些数据增加了我们自己的实验证据。最后,我们讨论了现有实用解决方案(基于回归的估计方程和同态缩放)的局限性,并主张使用一种有效、可靠和简单的基于现场的程序,直接从跳跃高度、体重和蹬伸距离计算跳跃期间产生的个体功率输出和最大功率输出能力。后者可以使研究人员和从业者通过使用简单而准确的计算方法将跳跃高度作为输入,而不是将其作为唯一或首要的感兴趣变量,从而减少对下肢机械功率输出评估的偏差。

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