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A Study of the Biomechanical Behavior of the Implantation Method of Inverted Shoulder Prosthesis (BIO–RSA) under Different Abduction Movements

机译:不同外展运动下倒肩假体(BIO-RSA)植入方法的生物力学行为研究

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摘要

The shoulder is the most mobile joint of the human body, but it is very fragile; several pathologies, and especially muscular degenerations in the elderly, can affect its stability. These are more commonly called rotator cuff fractures. In the case of this type of pathology, the mobility of the shoulder decreases and pain appears. In order to restore mobility and reduce pain, implantation of an inverted shoulder prosthesis is recommended. Unfortunately, over time a notch phenomenon has been observed. In the lower position of the arm, part of the implant comes into contact with the scapula and therefore causes deterioration of the bone. Among the solutions adopted is the lateralized method with bone grafting. However, a main disadvantage of this method concerns the reconstruction of the graft in the case of prosthesis revision. In this context, the aim of the present work was to reconstruct the shoulder joint in 3D in order to obtain a bio-faithful geometry, and then study the behavior of different types of biomaterials that can replace bone grafting. To this end, three arm abduction motions were examined for three individuals. From the results obtained, it appears that grafts in ultra-high molecular weight polyethylene (UHMWPE) exhibit a behavior closer to that of bones.
机译:肩膀是人体最易动的关节,但非常脆弱;多种病理,尤其是老年人的肌肉变性,都会影响其稳定性。这些通常称为肩袖骨折。在这种类型的病理情况下,肩膀的活动度降低,并出现疼痛。为了恢复活动性并减轻疼痛,建议植入反向肩假体。不幸的是,随着时间的流逝,已经观察到缺口现象。在手臂的下部位置,植入物的一部分与肩cap骨接触,因此导致骨骼退化。所采用的解决方案中包括采用植骨的侧向化方法。但是,这种方法的主要缺点在于假体翻修时移植物的重建。在这种情况下,本研究的目的是在3D模式下重建肩关节,以获得忠实的生物几何形状,然后研究可以替代骨移植的不同类型生物材料的行为。为此,检查了三个人的三个手臂绑架动作。从获得的结果来看,似乎超高分子量聚乙烯(UHMWPE)中的移植物表现出更接近骨骼的行为。

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