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信号指示跳跃方向的时机对跳跃-着陆-跳跃任务中膝关节生物力学的影响。

Effects of timing of signal indicating jump directions on knee biomechanics in jump-landing-jump tasks.

作者信息

Stephenson Mitchell L, Hinshaw Taylour J, Wadley Haley A, Zhu Qin, Wilson Margaret A, Byra Mark, Dai Boyi

机构信息

a Department of Kinesiology , Iowa State University , Ames , IA , USA.

b Division of Kinesiology and Health , University of Wyoming , Laramie , WY , USA.

出版信息

Sports Biomech. 2018 Mar;17(1):67-82. doi: 10.1080/14763141.2017.1346141. Epub 2017 Jul 21.

Abstract

A variety of the available time to react (ATR) has been utilised to study knee biomechanics during reactive jump-landing tasks. The purpose was to quantify knee kinematics and kinetics during a jump-land-jump task of three possible directions as the ATR was reduced. Thirty-four recreational athletes performed 45 trials of a jump-land-jump task, during which the direction of the second jump (lateral, medial or vertical) was indicated before they initiated the first jump, the instant they initiated the first jump, 300 ms before landing, 150 ms before landing or at the instant of landing. Knee joint angles and moments close to the instant of landing were significantly different when the ATR was equal to or more than 300 ms before landing, but became similar when the ATR was 150 ms or 0 ms before landing. As the ATR was decreased, knee moments decreased for the medial jump direction, but increased for the lateral jump direction. When the ATR is shorter than an individual's reaction time, the movement pattern cannot be pre-planned before landing. Knee biomechanics are dependent on the timing of the signal and the subsequent jump direction. Precise control of timing and screening athletes with low ATR are suggested.

摘要

已利用多种可用反应时间(ATR)来研究反应性跳跃着陆任务期间的膝关节生物力学。目的是在ATR缩短时,量化三个可能方向的跳跃-着陆-跳跃任务期间的膝关节运动学和动力学。34名休闲运动员进行了45次跳跃-着陆-跳跃任务试验,在此期间,第二次跳跃(横向、内侧或垂直)的方向在他们开始第一次跳跃之前、开始第一次跳跃的瞬间、着陆前300毫秒、着陆前150毫秒或着陆瞬间被指示。当ATR等于或大于着陆前300毫秒时,接近着陆瞬间的膝关节角度和力矩有显著差异,但当ATR为着陆前150毫秒或0毫秒时,它们变得相似。随着ATR的减小,内侧跳跃方向的膝关节力矩减小,但外侧跳跃方向的膝关节力矩增加。当ATR短于个体的反应时间时,着陆前的运动模式无法预先规划。膝关节生物力学取决于信号的时间和随后的跳跃方向。建议精确控制时间并筛选低ATR的运动员。

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