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地面反作用力矢量方向的改变会影响团队运动运动员的短跑加速表现。

Alterations to the orientation of the ground reaction force vector affect sprint acceleration performance in team sports athletes.

作者信息

Bezodis Neil E, North Jamie S, Razavet Jane L

机构信息

a Applied Sports, Technology, Exercise and Medicine Research Centre , Swansea University , Swansea , UK.

b School of Sport, Health and Applied Science , St Mary's University , Twickenham , UK.

出版信息

J Sports Sci. 2017 Sep;35(18):1-8. doi: 10.1080/02640414.2016.1239024. Epub 2016 Oct 4.

Abstract

A more horizontally oriented ground reaction force vector is related to higher levels of sprint acceleration performance across a range of athletes. However, the effects of acute experimental alterations to the force vector orientation within athletes are unknown. Fifteen male team sports athletes completed maximal effort 10-m accelerations in three conditions following different verbal instructions intended to manipulate the force vector orientation. Ground reaction forces (GRFs) were collected from the step nearest 5-m and stance leg kinematics at touchdown were also analysed to understand specific kinematic features of touchdown technique which may influence the consequent force vector orientation. Magnitude-based inferences were used to compare findings between conditions. There was a likely more horizontally oriented ground reaction force vector and a likely lower peak vertical force in the control condition compared with the experimental conditions. 10-m sprint time was very likely quickest in the control condition which confirmed the importance of force vector orientation for acceleration performance on a within-athlete basis. The stance leg kinematics revealed that a more horizontally oriented force vector during stance was preceded at touchdown by a likely more dorsiflexed ankle, a likely more flexed knee, and a possibly or likely greater hip extension velocity.

摘要

在一系列运动员中,更水平方向的地面反作用力矢量与更高水平的短跑加速表现相关。然而,运动员体内力矢量方向的急性实验性改变的影响尚不清楚。15名男性团队运动运动员在三种条件下完成了全力10米加速,这三种条件遵循了旨在操纵力矢量方向的不同口头指令。收集了距离5米最近一步的地面反作用力(GRF),并分析了触地时支撑腿的运动学,以了解可能影响后续力矢量方向的触地技术的特定运动学特征。基于量级的推断被用于比较不同条件下的结果。与实验条件相比,在对照条件下,地面反作用力矢量可能更水平,峰值垂直力可能更低。10米短跑时间在对照条件下很可能最快,这证实了力矢量方向对运动员个体加速表现的重要性。支撑腿的运动学表明,在支撑过程中,力矢量方向更水平之前,触地时踝关节可能更背屈,膝关节可能更屈曲,髋关节伸展速度可能或很可能更大。

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