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澳大利亚式足球远距离踢球的生物力学考量

Biomechanical considerations of distance kicking in Australian Rules football.

作者信息

Ball Kevin

机构信息

School of Human Movement, Recreation and Performance, Centre for Ageing, Rehabilitation, Exercise and Sport, Victoria University, Melbourne, Victoria, Australia.

出版信息

Sports Biomech. 2008 Jan;7(1):10-23. doi: 10.1080/14763140701683015.

Abstract

Kicking for distance in Australian Rules football is an important skill. Here, I examine technical aspects that contribute to achieving maximal kick distance. Twenty-eight elite players kicked for distance while being videoed at 500 Hz. Two-dimensional digitized data of nine body landmarks and the football were used to calculate kinematic parameters from kicking foot toe-off to the instant before ball contact. Longer kick distances were associated with greater foot speeds and shank angular velocities at ball contact, larger last step lengths, and greater distances from the ground when ball contact occurred. Foot speed, shank angular velocity, and ball position relative to the support foot at ball contact were included in the best regression predicting distance. A continuum of technique was evident among the kickers. At one end, kickers displayed relatively larger knee angular velocities and smaller thigh angular velocities at ball contact. At the other end, kickers produced relatively larger thigh angular velocities and smaller knee angular velocities at ball contact. To increase kicking distance, increasing foot speed and shank angular velocity at ball contact, increasing the last step length, and optimizing ball position relative to the ground and support foot are recommended.

摘要

在澳式橄榄球中,远距离踢球是一项重要技能。在此,我研究了有助于实现最大踢球距离的技术方面。28名精英球员在以500赫兹进行录像的情况下进行远距离踢球。利用九个身体标志点和足球的二维数字化数据来计算从踢球脚离地到球接触前瞬间的运动学参数。更长的踢球距离与球接触时更快的足部速度、更大的小腿角速度、更长的最后一步步长以及球接触时离地面更远的距离相关。球接触时的足部速度、小腿角速度以及球相对于支撑脚的位置被纳入预测距离的最佳回归模型中。踢球者之间技术呈现出连续性。一端的踢球者在球接触时表现出相对较大的膝关节角速度和较小的大腿角速度。另一端的踢球者在球接触时产生相对较大的大腿角速度和较小的膝关节角速度。为了增加踢球距离,建议提高球接触时的足部速度和小腿角速度,增加最后一步步长,并优化球相对于地面和支撑脚的位置。

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