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反向跳性能的决定因素:动力学和运动学分析

Determinants of countermovement jump performance: a kinetic and kinematic analysis.

作者信息

McErlain-Naylor Stuart, King Mark, Pain Matthew Thomas Gerard

机构信息

a School of Sport, Exercise and Health Sciences , Loughborough University , Loughborough , UK.

出版信息

J Sports Sci. 2014;32(19):1805-12. doi: 10.1080/02640414.2014.924055. Epub 2014 May 29.

Abstract

This study aimed to investigate the contributions of kinetic and kinematic parameters to inter-individual variation in countermovement jump (CMJ) performance. Two-dimensional kinematic data and ground reaction forces during a CMJ were recorded for 18 males of varying jumping experience. Ten kinetic and eight kinematic parameters were determined for each performance, describing peak lower-limb joint torques and powers, concentric knee extension rate of torque development and CMJ technique. Participants also completed a series of isometric knee extensions to measure the rate of torque development and peak torque. CMJ height ranged from 0.38 to 0.73 m (mean 0.55 ± 0.09 m). CMJ peak knee power, peak ankle power and take-off shoulder angle explained 74% of this observed variation. CMJ kinematic (58%) and CMJ kinetic (57%) parameters explained a much larger proportion of the jump height variation than the isometric parameters (18%), suggesting that coachable technique factors and the joint kinetics during the jump are important determinants of CMJ performance. Technique, specifically greater ankle plantar-flexion and shoulder flexion at take-off (together explaining 58% of the CMJ height variation), likely influences the extent to which maximal muscle capabilities can be utilised during the jump.

摘要

本研究旨在探讨动力学和运动学参数对个体间反向运动跳跃(CMJ)表现差异的影响。记录了18名具有不同跳跃经验的男性在CMJ过程中的二维运动学数据和地面反作用力。针对每次表现确定了10个动力学参数和8个运动学参数,描述下肢关节扭矩和功率峰值、扭矩发展的同心膝关节伸展速率以及CMJ技术。参与者还完成了一系列等长膝关节伸展动作,以测量扭矩发展速率和峰值扭矩。CMJ高度范围为0.38至0.73米(平均0.55±0.09米)。CMJ膝关节功率峰值、踝关节功率峰值和起跳时的肩部角度解释了所观察到的74%的差异。CMJ运动学参数(58%)和CMJ动力学参数(57%)对跳跃高度变化的解释比例远大于等长参数(18%),这表明可训练的技术因素和跳跃过程中的关节动力学是CMJ表现的重要决定因素。技术,特别是起跳时更大的踝关节跖屈和肩部屈曲(共同解释了58%的CMJ高度变化),可能会影响在跳跃过程中最大肌肉能力的利用程度。

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