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跆拳道侧踢的运动学分析。

Kinematic analysis of the side kick in Taekwon-do.

作者信息

Wąsik Jacek

机构信息

Jan Długosz University, Częstochowa, Poland.

出版信息

Acta Bioeng Biomech. 2011;13(4):71-5.

Abstract

The aim of the paper is to present the analysis of the influence of chosen kinetic factors on the side-kick technique. This issue is of a significant importance in the traditional version of Taekwon-do, where a single strike may reveal the winner. A male athlete, a black-belt holder, has participated in this case study. Generally accepted criteria of sports technique biomechanical analysis were adhered to. The athlete executed a side kick four times (in Taekwon-do terminology referred to as yop chagi) in a way most typical of his usual kick execution in board breaking. The parameter values obtained were used to determine the individual curves of the changes in velocities in the function of relative extension length of the kicking leg. The maximum knee and foot velocities in the Cartesian coordinate system were determined. The leg lifting time and the total time of kick execution as well as the maximum force which the foot exerted on the ground were also determined. On the basis of the values obtained the average values and the standard deviation were calculated. The correlation dependence (r = 0.97) shows that a higher knee velocity significantly affects the velocity which the foot develops and that the total time of kick execution depends on the velocity which the knee develops in the leg lifting phase (r = 0.75). The average maximum speed was obtained at the length of the leg equal to 82% of the maximum length of the fully extended leg. In the kicking technique used by the athlete, this length can be considered for this athlete the optimum value for achieving the maximum strike dynamics.

摘要

本文旨在分析所选动力学因素对侧踢技术的影响。在传统跆拳道中,这一问题至关重要,因为单次击打可能决定胜负。本案例研究的参与者是一名男性黑带运动员。研究遵循了体育技术生物力学分析的普遍公认标准。该运动员以其在击破木板时最典型的侧踢方式(跆拳道术语称为横踢)进行了四次侧踢。所获得的参数值用于确定踢腿速度随踢腿相对伸展长度变化的个体曲线。确定了笛卡尔坐标系中的最大膝盖和脚部速度。还确定了抬腿时间、踢腿执行总时间以及脚对地面施加的最大力。根据所获得的值计算了平均值和标准差。相关性依赖关系(r = 0.97)表明,较高的膝盖速度会显著影响脚部的速度,并且踢腿执行总时间取决于抬腿阶段膝盖的速度(r = 0.75)。在腿部长度等于完全伸展腿最大长度的82%时获得了平均最大速度。在该运动员使用的踢腿技术中,这一长度可被视为该运动员实现最大击打力度的最佳值。

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