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足球正脚背踢球中膝关节伸展的多关节动力链分析。

Multijoint kinetic chain analysis of knee extension during the soccer instep kick.

机构信息

Graduate School of Decision Science and Technology, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku 152-8552, Tokyo, Japan.

出版信息

Hum Mov Sci. 2010 Apr;29(2):259-76. doi: 10.1016/j.humov.2009.04.008. Epub 2010 Feb 10.

Abstract

Although previous studies have shown that motion-dependent interactions between adjacent segments play an important role in producing knee extension during the soccer instep kick, detailed knowledge about the mechanisms underlying those interactions is lacking. The present study aimed to develop a 3-D dynamical model for the multijoint kinetic chain of the instep kick in order to quantify the contributions of the causal dynamical factors to the production of maximum angular velocity during knee extension. Nine collegiate soccer players volunteered to participate in the experiment and performed instep kicking movements while 3-D positional data and the ground reaction force were measured. A dynamical model was developed in the form of a linked system containing 8 segments and 18 joint rotations, and the knee extension/flexion motion was decomposed into causal factors related to muscular moment, gyroscopic moment, centrifugal force, Coriolis force, gravity, proximal endpoint linear acceleration, and external force-dependent terms. The rapid knee extension during instep kicking was found to result almost entirely from kicking leg centrifugal force, trunk rotation muscular moment, kicking leg Coriolis force, and trunk rotation gyroscopic-dependent components. Based on the finding that rapid knee extension during instep kicking stems from multiple dynamical factors, it is suggested that the multijoint kinetic chain analysis used in the present study is more useful for achieving a detailed understanding of the cause of rapid kicking leg movement than the previously used 2-D, two-segment kinetic chain model. The present results also indicated that the centrifugal effect due to the kicking hip flexion angular velocity contributed substantially to the generation of a rapid knee extension, suggesting that the adjustment between the kicking hip flexion angular velocity and the leg configuration (knee flexion angle) is more important for effective instep kicking than other joint kinematics.

摘要

虽然先前的研究表明,相邻节段之间的运动相关相互作用在足球正脚背踢球时产生膝关节伸展中起着重要作用,但对于这些相互作用的潜在机制还缺乏详细的了解。本研究旨在为正脚背踢球的多关节动力链建立一个三维动力学模型,以便定量确定因果动力学因素对膝关节伸展过程中最大角速度产生的贡献。九名大学生足球运动员自愿参加实验,在进行正脚背踢球运动的同时,测量三维位置数据和地面反作用力。动力学模型以包含 8 个节段和 18 个关节旋转的链接系统的形式建立,膝关节伸展/弯曲运动被分解为与肌肉力矩、陀螺力矩、离心力、科里奥利力、重力、近端端点线性加速度和外力相关项有关的因果因素。正脚背踢球时快速的膝关节伸展几乎完全来自于踢球腿的离心力、躯干旋转肌肉力矩、踢球腿的科里奥利力和躯干旋转陀螺力矩的依赖成分。基于正脚背踢球时快速膝关节伸展源自多个动力学因素的发现,建议本研究中使用的多关节动力链分析比以前使用的二维、两段动力链模型更有助于详细了解快速踢腿运动的原因。本研究结果还表明,由于踢腿髋关节屈曲角速度引起的离心作用对快速膝关节伸展的产生有很大贡献,这表明在有效的正脚背踢球中,踢腿髋关节屈曲角速度与腿部配置(膝关节屈曲角度)之间的调整比其他关节运动学更重要。

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