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Bone remodelling of the scapula after a total shoulder arthroplasty

机译:全肩关节置换术后肩cap骨的骨重塑

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According to Wolff's law, the changes in stress after a prosthesis implantation may modify the shape and internal structure of bone, thus compromising the long-term prosthesis fixation and, consequently, be a significant factor for glenoid loosening. The aim of the present study is to evaluate the changes in the bone adaptation process of the scapula after an anatomical and reverse total shoulder arthroplasty. Five finite element models of the implanted scapula are developed considering the implantation of three anatomical, cemented, all-polyethylene components; an anatomical, cementless, metal-backed component; and a reverse, allmetal component. The methodology followed to simulate the bone adaptation of the scapula was previously validated for the intact model, prior to the prosthesis implantation. Additionally, the influence of the bone quality on the adaptation process is also investigated by considering an osteoporotic condition. The results show that the stress shielding phenomenon is more concerning in cementless, metal-based components than in cemented, all-polyethylene components, regardless of the bone quality. Consequently, as far as the bone adaptation process of the bone is concerned, cemented, all-polyethylene components are better suited for the treatment of the shoulder joint.
机译:根据沃尔夫定律,假体植入后的应力变化可能会改变骨骼的形状和内部结构,从而损害了假体的长期固定,因此是关节盂松弛的重要因素。本研究的目的是评估解剖和反向全肩关节置换术后肩the骨的骨适应过程的变化。考虑到三个解剖学的,粘合的全聚乙烯组件的植入,开发了五个植入式肩骨的有限元模型。解剖学的,非骨水泥的金属支持的组件;以及反向的全金属组件。在植入假体之前,先前针对完整模型验证了用于模拟肩骨适应性的方法。此外,还通过考虑骨质疏松症来研究骨骼质量对适应过程的影响。结果表明,与骨质全聚乙烯部件相比,无骨金属基部件的应力屏蔽现象更为重要。因此,就骨骼的骨骼适应过程而言,胶合的全聚乙烯成分更适合于治疗肩关节。

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