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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Shell design and reaming technique affect deformation in mobile-bearing total hip arthroplasty acetabular components
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Shell design and reaming technique affect deformation in mobile-bearing total hip arthroplasty acetabular components

机译:壳牌设计和铰孔技术影响移动轴承总髋关节置换术髋臼成分的变形

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摘要

Press-fit acetabular components are susceptible to rim deformation. The inherent variability within acetabular reaming techniques may generate increased press-fit and, subsequently, additional component deformation. The purpose of this study was to analyze the insertion and deformation characteristics of acetabular components designed for dual-mobility systems based on component design, size, and reaming technique. Shell deformation was quantified in a validated worst-case scenario foam pinch model. Thin-walled, one-piece, and modular dual-mobility shells of varying size were implanted in under- and over-reamed cavities with insertion force measured and shell deformation assessed using digital image correlation. Increased shell size resulted in larger rim deformation in one-piece components, with a reduction in press-fit by 1 mm resulting in up to 48% reduction in insertion forces and between 23% and 51% reduction in shell deformation. Lower insertion forces and deformations were observed in modular components. Variability in acetabular reaming plays a significant role in the ease of implantation and component deformation in total hip arthroplasty. Modular components are less susceptible to deformation than thin-walled monoblock shells. Care should be taken to avoid excessive under-reaming, particularly in the scenario of large shell size and high-density patient bone stock.
机译:压配合髋臼部件易受边缘变形的影响。髋臼铰孔技术内的固有变异可以产生增加的压配合,随后的附加成分变形。本研究的目的是分析基于部件设计,尺寸和铰孔技术的双移动系统设计的髋臼部件的插入和变形特性。在验证最坏情况场景泡沫捏合模型中量化了壳变形。薄壁,单件式和模块化双迁移壳的不同尺寸植入和过束的腔内,使用数字图像相关性评估的插入力测量和壳变形。增加的壳体尺寸导致单件式部件中的较大边缘变形,压力配合减少1mm,导致插入力降低至48%,壳体变形降低了23%和51%。在模块化组分中观察到较低的插入力和变形。髋臼铰孔中的变异性在总髋关节置换术中的植入和组分变形方面起着重要作用。模块化部件比薄壁单块壳更容易变形。应注意避免过度令人束缚,特别是在大壳体尺寸和高密度患者骨头上的情况下。

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