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A Simplified Musculoskeletal Hip Model for Replicating the Natural Human Walking Behavior

机译:一种简化的肌肉骨骼髋关节模型,用于复制自然人走行

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Musculoskeletal models provide an alternative way to explore the function of muscles. The purpose of this study is to develop a simplified musculoskeletal hip model with lumped muscles to investigate the biomechanics and energetics of biological muscle groups during human walking. Our hip model is actuated by four active Hill-type muscle-tendon units (MTUs) and a passive torsional spring representing elastic tissues, the lumped muscle parameters of the model are derived from initial muscles within a group and optimized to make it output human-Iike profile of the joint moment. The coefficient of determination and root mean squared error (RMSE) are both used to validate the hip model. Our results show the coefficient and normalized RMSE related to body weight are both in the statistical acceptance range, which validate the ability of our model replicating human behaviors at the hip joint-level. The calculated muscle activation and total metabolic energy consumption of the hip MTUs also match the experimental data well, which further validate the performance of the model at a deeper muscle-level.
机译:肌肉骨骼模型提供了一种探索肌肉功能的替代方法。本研究的目的是开发一种简化的肌肉骨骼髋关节模型,肌肉肿块肌肉,以研究人类行走期间生物肌肉群的生物力学和能量学。我们的髋部模型由四个活性山型肌腱单元(MTU)和代表弹性组织的被动扭转弹簧致动,该模型的块状肌肉参数源自一组内的初始肌肉,并优化以使其输出人类 - 相对的联合力矩。确定系数和根均方误差(RMSE)均用于验证HIP模型。我们的结果表明,与体重相关的系数和归一化RMSE都在统计验收范围内,这验证了我们模型在髋关节级别复制人类行为的能力。计算出的肌肉激活和HIP MTU的总代谢能量也与实验数据吻合匹配,这进一步验证了模型在更深的肌肉水平下的性能。

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