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高水平运动员的人体足部肌肉力量及其与短跑加速、变向和跳跃表现以及动力学的关系。

Human foot muscle strength and its association with sprint acceleration, cutting and jumping performance, and kinetics in high-level athletes.

机构信息

Interuniversity Laboratory of Human Movement Sciences, University Jean Monnet Saint-Etienne, Lyon 1, University Savoie Mont-Blanc, Saint-Etienne, France.

Physiotherapy department and motion analysis lab, Swiss Olympic Medical Center, La Tour Hospital, Meyrin, Switzerland.

出版信息

J Sports Sci. 2024 May;42(9):814-824. doi: 10.1080/02640414.2024.2367365. Epub 2024 Jun 14.

Abstract

The primary objective of this study was to investigate the relationship between metatarsophalangeal joint (MTPj) flexion torque and sprint acceleration, cutting and jumping performance, and kinetics. A secondary aim was to explore this relationship when MTP flexion strength was associated with other foot and lower limb neuromuscular outputs. After an initial MTPj flexion torque assessment using a custom-built dynamometer, 52 high-level athletes performed the following tasks on a force platform system: maximal sprint acceleration, 90-degree cutting, vertical and horizontal jumps, and foot-ankle hops. Their foot posture, foot passive stiffness and foot-ankle reactive strength were assessed using the Foot Posture Index, the Arch Height Index Measurement System and the Foot-Ankle Rebound Jump Test. Ankle plantarflexion and knee extension isometric torque were assessed using an isokinetic dynamometer. During maximal speed sprinting, multiple linear regressions suggested a major contribution of MTPj flexion torque, foot passive stiffness and foot-ankle reactive strength to explain 28% and 35% of the total variance in the effective vertical impulse and contact time. Ankle plantarflexor and quadriceps isometric torques were aggregately contributors of acceleration performance and separate contributors of cutting and jumping performance. In conclusion, MTPj flexion torque was more strongly associated with sprinting performance kinetics especially at high-speed.

摘要

本研究的主要目的是探究跖趾关节(MTPj)弯曲扭矩与短跑加速、变向和跳跃性能以及动力学之间的关系。次要目的是探讨当 MTP 弯曲强度与其他足部和下肢神经肌肉输出相关联时,这种关系会如何变化。在使用定制测力计进行初始 MTPj 弯曲扭矩评估后,52 名高水平运动员在力台系统上执行了以下任务:最大短跑加速、90 度变向、垂直和水平跳跃以及足踝跳跃。他们的足部姿势、足部被动刚度和足踝反应强度使用足弓指数、足弓高度指数测量系统和足踝反弹跳跃测试进行评估。使用等速测力计评估踝关节跖屈和膝关节伸展等长扭矩。在最大速度冲刺期间,多元线性回归表明 MTPj 弯曲扭矩、足部被动刚度和足踝反应强度对有效垂直冲量和接触时间的总方差有较大的解释作用,分别解释了 28%和 35%。踝关节跖屈肌和股四头肌等长扭矩是加速性能的综合贡献者,也是变向和跳跃性能的单独贡献者。总之,MTPj 弯曲扭矩与短跑性能动力学的相关性更强,尤其是在高速时。

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