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Walking kinematics and kinetics following eccentric exercise-induced muscle damage

机译:离心运动引起的肌肉损伤后的步行运动学和动力学

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摘要

The goal of this investigation was to investigate how walking patterns are affected following muscle-damaging exercise by quantifying both lower limb kinematics and kinetics. Fifteen young women conducted a maximal isokinetic eccentric exercise (EE) muscle damage protocol (5×15) of the knee extensors and flexors of both legs at 60°/s. Three-dimensional motion data and ground reaction forces (GRFs) were collected 24. h pre-EE while the participants walked at their preferred self-selected walking speed (SWS). Participants were asked to perform two gait conditions 48. h post-EE. The first condition (COND1) was to walk at their own speed and the second condition (COND2) to maintain the SWS (±5%) they had 24. h pre-EE. Walking speed during COND1 was significantly lower compared to pre-exercise values. When walking speed was controlled during COND2, significant effects of muscle damage were noticed, among other variables, for stride frequency, loading rate, lateral and vertical GRFs, as well as for specific knee kinematics and kinetics. These findings provide new insights into how walking patterns are adapted to compensate for the impaired function of the knee musculature following muscle damage. The importance to distinguish the findings caused by muscle damage from those exhibited in response to changes in stride frequency is highlighted.
机译:这项研究的目的是通过量化下肢的运动学和动力学来研究在破坏肌肉的运动后步行方式如何受到影响。 15名年轻女性以60°/ s的速度对双腿的膝盖伸肌和屈肌进行了最大等速离心运动(EE)肌肉损伤方案(5×15)。 EE前24小时收集三维运动数据和地面反作用力(GRF),同时参与者以自己喜欢的自行选择的行走速度(SWS)行走。要求参与者在EE后48小时进行两次步态训练。第一个条件(COND1)是按照自己的速度行走,第二个条件(COND2)保持SWS(EE)前24 h的SWS(±5%)。与运动前的值相比,COND1期间的步行速度明显更低。当在COND2期间控制步行速度时,除其他变量外,还注意到步幅频率,负荷率,横向和垂直GRF以及特定的膝关节运动学和动力学对肌肉损伤的显着影响。这些发现为如何适应步行模式以补偿肌肉损伤后膝部肌肉组织功能受损提供了新见解。强调了区分由肌肉损伤引起的发现和对步幅频率变化做出反应的发现的重要性。

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