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A comprehensive and volumetric musculoskeletal model for the dynamic simulation of the shoulder function

机译:用于肩部功能动态模拟的综合体积肌肉骨骼模型

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摘要

We present a volumetric and extensive finite element model of the shoulder usable in the context of inverse control, in which the scapula is left unconstrained on the ribcage. Such a model allows for exploring various shoulder movements, which are essential for making patient-specific decisions. The proposed model consists of 23 volumetric muscles parts modelled using the finite element method. The glenohumeral, acromioclavicular and sternoclavicular joints are modelled with soft ball-socket constraints. The musculoskeletal model can be controlled by a tracking-based algorithm, finding the excitations values in the muscles needed to follow some target points. The moment arms obtained during abduction and rotation are compared with the literature, which includes results from cadaveric data and a fine FE model of the rotator cuff and the deltoid. We simulated the paralysis of serratus anterior, a main reason of scapular winging, and compared it with its physiological counterpart. A deficiency in the range of motion as well as a reduction in upward rotation were observed, which both corroborate clinical observations. This is one of the most comprehensive model of the shoulder, which can be used to study complex pathologies of the shoulder and their impact on functional outcome such as range-of-motion.
机译:我们提出了在反向控制的情况下可用的肩部的体积和广泛的有限元模型,其中肩s骨不受约束地放在胸腔上。这种模型允许探索各种肩膀运动,这对于做出针对患者的决定至关重要。所提出的模型由使用有限元方法建模的23个体积肌肉部分组成。盂肱关节,肩锁关节和胸锁关节采用软球窝约束进行建模。可以通过基于跟踪的算法来控制肌肉骨骼模型,从而找到遵循某些目标点所需的肌肉中的激励值。将外展和旋转过程中获得的力矩臂与文献进行比较,其中包括尸体数据的结果以及肩袖和三角肌的精细有限元模型。我们模拟了锯齿状前肌麻痹,这是肩cap骨机翼的主要原因,并将其与生理上的对应物进行了比较。观察到运动范围的缺乏以及向上旋转的减少,这都证实了临床观察。这是最全面的肩部模型之一,可用于研究肩部的复杂病理及其对功能结果(例如运动范围)的影响。

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