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肌肉强化对垂直跳跃高度的影响:一项模拟研究。

Effects of muscle strengthening on vertical jump height: a simulation study.

作者信息

Bobbert M F, Van Soest A J

机构信息

Department of Functional Anatomy, Faculteit Bewegingswetenschappen, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

Med Sci Sports Exerc. 1994 Aug;26(8):1012-20.

PMID:7968418
Abstract

In this study the effects of systematic manipulations of control and muscle strength on vertical jump height were investigated. Forward dynamic simulations of vertical squat jumps were performed with a model of the human musculoskeletal system. Model input was STIM(t), stimulation of six lower extremity muscles as function of time; model output was body motion. The model incorporated all features of the musculoskeletal system of human test subjects considered salient for vertical jumping, and the initial body configuration was set equal to that of the test subjects. First, optimal STIM(t) was found for a standard version of the model (experiment A). A satisfactory correspondence was found between simulation results and kinematics, kinetics and electromyograms of the test subjects. Subsequently, optimal STIM(t) for the standard model was used to drive a model with strengthened muscles (experiment B). Jump height was now lower than that found in experiment A. Finally, optimal STIM(t) was found for the model with strengthened muscles (experiment C). Jump height was now higher than that found in experiment A. These results suggest that in order to take full benefit of an increase in muscle strength, control needs to be adapted. It is speculated that in training programs aimed at improving jumping achievement, muscle training exercises should be accompanied by exercises that allow athletes to practice with their changed muscles.

摘要

在本研究中,研究了对控制和肌肉力量进行系统操作对垂直跳跃高度的影响。使用人体肌肉骨骼系统模型对垂直深蹲跳进行了正向动态模拟。模型输入为STIM(t),即作为时间函数的六块下肢肌肉的刺激;模型输出为身体运动。该模型纳入了被认为对垂直跳跃至关重要的人体测试对象肌肉骨骼系统的所有特征,并且初始身体构型设置为与测试对象相同。首先,为模型的标准版本找到最优的STIM(t)(实验A)。在模拟结果与测试对象的运动学、动力学和肌电图之间发现了令人满意的对应关系。随后,使用标准模型的最优STIM(t)来驱动肌肉增强的模型(实验B)。此时的跳跃高度低于实验A中的跳跃高度。最后,为肌肉增强的模型找到最优的STIM(t)(实验C)。此时的跳跃高度高于实验A中的跳跃高度。这些结果表明,为了充分利用肌肉力量的增加,控制需要进行调整。据推测,在旨在提高跳跃成绩的训练计划中,肌肉训练练习应伴有让运动员利用其变化后的肌肉进行练习的训练。

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