An elbow biomechanical model and its coefficients adjustment

J. Bai, Yongsheng Gao, Shengxin Wang, Jie Zhao
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引用次数: 4

Abstract

Through the establishment of the elbow biomechanical model, it can provide theoretical guide for rehabilitation therapy on the upper limb of the human body. A biomechanical model of the elbow joint can be built by the connection of muscle force model and elbow dynamics. But there are many undetermined coefficients in the model like the optimal joint angle and optimal muscle force which are usually specified as the experimental parameters of other workers. Because of the individual differences, there is a certain deviation of the final result. To this end, the RMS value of the deviation between the actual angle and calculated angle is considered. A set of coefficients which lead to the minimum RMS value will be chosen to be the optimal parameters. The direct search method and the conjugacy search method are used to get the optimal parameters, thus the model can be more accurate and mode adaptability.
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肘部生物力学模型及其系数调整
通过建立肘关节生物力学模型,可以为人体上肢的康复治疗提供理论指导。将肌肉力模型与肘关节动力学相结合,建立肘关节的生物力学模型。但模型中存在许多待定系数,如最优关节角、最优肌力等,通常被指定为其他工人的实验参数。由于个体差异,最终结果存在一定偏差。为此,考虑了实际角度与计算角度偏差的均方根值。选取一组导致均方根值最小的系数作为最优参数。采用直接搜索法和共轭搜索法获得最优参数,提高了模型的准确性和模型自适应性。
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