Kinematics based physical modelling and experimental analysis of the shoulder joint complex

D. Almeida-Galárraga, Antonio Ros-Felip, Virginia Álvarez-Sánchez, F. Marco-Martínez, Laura Serrano-Mateo
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引用次数: 5

Abstract

The purpose of this work is to develop an experimental physical model of the shoulder joint complex. The aim of this research is to validate the model built and identify the forces on specified positions of this joint. The shoulder musculoskeletal structures have been replicated to evaluate the forces to which muscle fibres are subjected in different equilibrium positions: 60o flexion, 60o abduction and 30o abduction and flexion. The physical model represents, quite accurately, the shoulder complex. It has 12 real degrees of freedom, which allows motions such as abduction, flexion, adduction and extension and to calculate the resultant forces of the represented muscles. The built physical model is versatile and easily manipulated and represents, above all, a model for teaching applications on anatomy and shoulder joint complex biomechanics. Moreover, it is a valid research tool on muscle actions related to abduction, adduction, flexion, extension, internal and external rotation motions or combination among them.
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基于运动学的肩关节复合体物理建模与实验分析
这项工作的目的是建立一个肩关节复合体的实验物理模型。本研究的目的是验证所建立的模型,并确定该关节指定位置上的力。肩部肌肉骨骼结构已被复制,以评估肌肉纤维在不同平衡位置所承受的力:600度屈曲,600度外展和300度外展和屈曲。物理模型相当准确地代表了肩部复合体。它有12个真正的自由度,可以进行外展、屈曲、内收和伸展等运动,并可以计算所代表肌肉的合力。建立的物理模型是通用的,易于操作,并代表,首先,一个模型的教学应用解剖学和肩关节复杂的生物力学。此外,它是研究外展、内收、屈、伸、内外旋转运动或它们之间的组合等肌肉动作的有效工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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