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女子跳远最后一步、着地和起跳特征的生物力学分析。

A biomechanical analysis of the last stride, touch-down and take-off characteristics of the women's long jump.

作者信息

Lees A, Fowler N, Derby D

机构信息

Sports Biomechanics Laboratory, School of Human Sciences, Liverpool John Moores University, UK.

出版信息

J Sports Sci. 1993 Aug;11(4):303-14. doi: 10.1080/02640419308730000.

Abstract

This study was concerned with the measurement of a selection of performance variables from competitors in the women's long jump final of the World Student Games held in Sheffield, UK in July 1991. Several performances of each of six finalists were recorded on cine-film at 100 Hz. Resulting planar kinematic data were obtained for the last stride, touch-down and take-off. For the analysis, the point of maximum knee flexion was established and this was used to represent the point at which the compression phase had ended. A variety of variables describing the position, velocity and angular changes are presented as descriptive data. In addition, these were used to compute energies on the basis of a whole body model. The data were interpreted on the basis of a technique model of long jumping established from the literature. It was confirmed that take-off velocity was a function of touch-down velocity, and that there was an increase in vertical velocity at the expense of a reduction of horizontal velocity. An attempt was made to identify the mechanisms acting during the touch-down to take-off phase which were responsible for generating vertical velocity. It was concluded that there was evidence for mechanical, biomechanical and muscular mechanisms. The former relates to the generation of vertical velocity by the body riding over the base of support; the second is the elastic re-utilization of energy; and the third is the contribution by concentric muscular contraction.

摘要

本研究关注于对1991年7月在英国谢菲尔德举行的世界大学生运动会女子跳远决赛中部分参赛选手的表现变量进行测量。六位决赛选手每人的几次表现都以100赫兹的频率记录在电影胶片上。由此获得了最后一步、着地和起跳时的平面运动学数据。在分析过程中,确定了最大屈膝点,并以此代表压缩阶段结束的点。呈现了各种描述位置、速度和角度变化的变量作为描述性数据。此外,这些数据还被用于基于全身模型计算能量。这些数据是根据从文献中建立的跳远技术模型进行解释的。研究证实,起跳速度是着地速度的函数,并且垂直速度增加是以水平速度降低为代价的。研究试图确定在着地到起跳阶段起作用的、导致垂直速度产生的机制。得出的结论是,有证据表明存在机械、生物力学和肌肉机制。前者涉及身体越过支撑基础产生垂直速度;第二种是能量的弹性再利用;第三种是向心肌肉收缩的贡献。

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