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首页> 外文期刊>Journal of Applied Biomechanics >The Relationship Between Joint Kinetic Factors and the Walk-Run Gait Transition Speed During Human Locomotion
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The Relationship Between Joint Kinetic Factors and the Walk-Run Gait Transition Speed During Human Locomotion

机译:运动过程中关节动力学因素与步行步态过渡速度的关系

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摘要

The primary purpose of this project was to examine whether lower extremity joint kinetic factors are related to the walk-run gait transition during human locomotion. Following determination of the preferred transition speed (PTS), each of the 16 subjects walked down a 25-m runway, and over a floor-mounted force platform at five speeds (70, 80, 90, 100, and 110% of the PTS), and ran over the force platform at three speeds (80, 100, and 120% of the PTS) while being videotaped (240 Hz) from the right sagittal plane. Two-dimensional kinematic data were synchronized with ground reaction force data (960 Hz). After smoothing, ankle and knee joint moments and powers were calculated using standard inverse dynamics calculations. The maximum dorsiflexor moment was the only variable tested that increased as walking speed increased and then decreased when gait changed to a run at the PTS, meeting the criteria set to indicate that this variable influences the walk-run gait transition during human locomotion. This supports previous research suggesting that an important factor in changing gaits at the PTS is the prevention of undue stress in the dorsiflexor muscles.
机译:该项目的主要目的是检查下肢关节动力学因素是否与人类运动中步行步态过渡有关。确定首选过渡速度(PTS)之后,这16名受试者中的每一个都沿着25米的跑道走下,并以五种速度(分别是PTS的70%,80%,90%,100%和110%)走过地面固定式力量平台),并以三种速度(分别是PTS的80%,100%和120%)在力平台上运行,同时从右矢状面进行录像(240 Hz)。二维运动学数据与地面反作用力数据(960 Hz)同步。平滑后,使用标准逆动力学计算来计算踝关节和膝关节的力矩和力量。最大的背屈力矩是唯一测试的变量,其随着步行速度的增加而增加,然后在步态改变为PTS的奔跑时减小,满足设定的标准,表明该变量影响人类运动期间步行步态的转变。这支持了先前的研究,表明在PTS处改变步态的重要因素是防止背屈肌过度紧张。

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