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Dynamical biomechanical model of the shoulder for muscle-force estimation

机译:用于评估肌肉力量的肩膀动态生物力学模型

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摘要

A biomechanical model of the human shoulder complex is proposed for quasi-static and dynamic estimation of the muscle forces and joint reaction forces in the glenohumeral joint. The model bases itself on the Garner & Pandy model but adds a dynamic layer. The muscle forces are estimated using a two stage approach. First, a set of joint motions are estimated using a minimal set of coordinates. Second, inverse dynamics combined with static optimization are used to estimate the associated muscle forces. To improve the solution, the muscle force estimation problem is decomposed into two parts solved sequentially: i) the forces in the muscles spanning the glenohumeral joint are found and ii) the rest of the forces are found so as to satisfy the equilibrium condition. The minimal set of coordinates are also found using the same decomposition of the system. The muscle-force and joint reaction force results are compared to values found in the literature.
机译:提出了一种人类肩部复合物的生物力学模型,用于对盂肱关节的肌肉力和关节反作用力进行准静态和动态估计。该模型以Garner&Pandy模型为基础,但添加了动态图层。使用两步法估算肌肉力量。首先,使用最少的一组坐标估计一组关节运动。第二,结合静态优化的逆动力学用于估计相关的肌肉力。为了改进解决方案,将肌肉力估计问题分解为两部分,依次解决:i)找到横跨肱肱关节的肌肉中的力,ii)找到其余的力以满足平衡条件。使用系统的相同分解也可以找到最小的坐标集。将肌肉力和关节反作用力结果与文献中的值进行比较。

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