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Improving anterior deltoid activity in a musculoskeletal shoulder model - an analysis of the torque-feasible space at the sternoclavicular joint

机译:在肌肉骨骼肩关节模型中改善前三角肌活动-胸锁关节扭矩可行空间分析

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摘要

Modelling the shoulder's musculature is challenging given its mechanical and geometric complexity. The use of the ideal fibre model to represent a muscle's line of action cannot always faithfully represent the mechanical effect of each muscle, leading to considerable differences between model-estimated and in vivo measured muscle activity. While the musculo-tendon force coordination problem has been extensively analysed in terms of the cost function, only few works have investigated the existence and sensitivity of solutions to fibre topology. The goal of this paper is to present an analysis of the solution set using the concepts of torque-feasible space (TFS) and wrench-feasible space (WFS) from cable-driven robotics. A shoulder model is presented and a simple musculo-tendon force coordination problem is defined. The ideal fibre model for representing muscles is reviewed and the TFS and WFS are defined, leading to the necessary and sufficient conditions for the existence of a solution. The shoulder model's TFS is analysed to explain the lack of anterior deltoid (DLTa) activity. Based on the analysis, a modification of the model's muscle fibre geometry is proposed. The performance with and without the modification is assessed by solving the musculo-tendon force coordination problem for quasi-static abduction in the scapular plane. After the proposed modification, the DLTa reaches 20% of activation.
机译:考虑到其机械和几何结构的复杂性,对肩部肌肉组织进行建模具有挑战性。使用理想的纤维模型来代表肌肉的作用线并不能始终如一地代表每个肌肉的机械作用,从而导致模型估计的肌肉活动和体内测量的肌肉活动之间存在巨大差异。尽管已根据成本函数对肌肉-肌腱力协调问题进行了广泛的分析,但很少有人研究光纤拓扑结构解决方案的存在性和敏感性。本文的目的是使用来自电缆驱动机器人的转矩可行空间(TFS)和扳手可行空间(WFS)的概念,对解决方案集进行分析。提出了一个肩部模型并定义了一个简单的肌腱力协调问题。审查了代表肌肉的理想纤维模型,并定义了TFS和WFS,从而为解决方案的存在提供了必要和充分的条件。分析肩膀模型的TFS以解释缺乏前三角肌(DLTa)活动。在分析的基础上,提出了对模型的肌肉纤维几何形状的修改。通过解决在肩cap平面内准静态外展的肌腱力协调问题,可以评估带或不带修饰的性能。提出建议的修改后,DLTa达到激活的20%。

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