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Effects of Muscle Fatigue on the Ground Reaction Force and Soft-Tissue Vibrations During Running: A Model Study

机译:跑步过程中肌肉疲劳对地面反作用力和软组织振动的影响:模型研究

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摘要

A modeling approach is used in this paper to study the effects of fatigue on the ground reaction force (GRF) and the vibrations of the lower extremity soft tissues. A recently developed multiple degrees-of-freedom mass–spring–damper model of the human body during running is used for this purpose. The model is capable of taking the muscle activity into account by using a nonlinear controller that tunes the mechanical properties of the soft-tissue package based on two physiological hypotheses, namely, “constant force” and “constant vibration.” In this study, muscle fatigue is implemented in the model as the gradual reduction of the ability of the controller to tune the mechanical properties of the lower body soft-tissue package. Simulations are carried out for various types of footwear in both pre- and postfatigue conditions. The simulation results show that the vibration amplitude of the lower body soft-tissue package may considerably increase (up to 20%) with muscle fatigue, while the effects of fatigue on the GRF are negligible. The results of this modeling study are in line with the experimental studies that found muscle fatigue does not significantly change the GRF peaks, but may increase the level of soft-tissue vibrations (particularly for hard shoes). A major contribution of the current study is the formulation of a hypothesis about how the central nervous system tunes the muscle properties after fatigue.
机译:本文采用一种建模方法来研究疲劳对地面反作用力(GRF)和下肢软组织振动的影响。为此,使用了最近开发的跑步过程中人体的多个自由度质量-弹簧-阻尼器模型。该模型能够通过使用非线性控制器来考虑肌肉活动,该非线性控制器基于两个恒定的假设即“恒定力”和“恒定振动”来调整软组织包装的机械性能。在本研究中,模型中的肌肉疲劳随着控制器调节下半身软组织包装的机械性能的能力的逐渐降低而实现。在疲劳前和疲劳后的条件下对各种类型的鞋进行了仿真。仿真结果表明,随着肌肉疲劳,下半身软组织包装的振动幅度可能会显着增加(最高20%),而疲劳对GRF的影响可以忽略不计。该建模研究的结果与实验研究一致,后者发现肌肉疲劳不会显着改变GRF峰值,但可能会增加软组织振动的水平(特别是对于硬鞋)。当前研究的主要贡献是提出了关于中枢神经系统在疲劳后如何调节肌肉特性的假设。

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