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Implementation of an efficient muscle fatigue model in the framework of multibody systems dynamics for analysis of human movements

机译:在多体系统动力学框架内实现有效的肌肉疲劳模型,以分析人体运动

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摘要

The aim of this study is to implement and integrate a novel and versatile muscle fatigue model in an existing multibody formulation with natural coordinates. The equations of motion of the formulation are rearranged to deal with muscle actuators as externally concentrated forces instead of being considered as kinematic muscle actuator drivers. A muscle fatigue model, originally developed to predict the endurance time of the main body joints, is included in the multibody formulation. The model stems from the compartment theory and uses a bounded controller to rule the rate of motor units changing between the three compartments (resting, activated, and fatigued) that made up the model. The resulting formulation is applied to two example cases involving the human upper extremity, with redundant muscles, to evaluate its robustness and accuracy. Results showed that the proposed methodologies are a valid approach for the calculation of the redundant muscle forces in the presence of muscular fatigue.
机译:这项研究的目的是在现有的具有自然坐标的多体配方中实施和整合一种新颖的多功能肌肉疲劳模型。重新布置了制剂的运动方程,以将肌肉致动器视为外部集中力,而不是将其视为运动型肌肉致动器驱动器。多体配方中包含了最初用于预测主体关节耐力时间的肌肉疲劳模型。该模型源于隔室理论,并使用有界控制器来控制组成模型的三个隔室(静止,激活和疲劳)之间的电机单位变化率。将所得的公式应用于涉及人类上肢且肌肉多余的两个示例案例,以评估其健壮性和准确性。结果表明,所提出的方法是在存在肌肉疲劳的情况下计算多余肌肉力量的有效方法。

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