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DESIGN OF A GRADED CELLULAR STRUCTURE FOR AN ACETABULAR HIP REPLACEMENT COMPONENT

机译:髋臼髋关节置换成分的分级蜂窝结构设计

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The state-of-the-art porous coatings become more and more popular in uncemented prostheses to make bone grow into implants for biological fixation. In this paper, graded cellular structures are proposed for uncemented prostheses to enhance stability on implant-bone interfaces. As an example study, the authors develop a new acetabular implant with gradient porosity for hip replacement. A gradient porous acetabular component with cellular structure could match the bone's elasticity. Material is adaptively distributed from high porosity at the bone-implant interface to solid metal at the joint's articulating surface. The new acetabular prosthesis would replace metal-on-polyethylene bearing with metal-on-metal bearing for less wear. The design problem of acetabular component is formulated and a requirement list is elaborated. A detailed design of the prosthesis with a graded cellular structure is presented. The design concept is validated with a comparison to the existing products according to the design requirements.
机译:最先进的多孔涂层在未发现的假体中变得越来越受欢迎,以使骨骼生长成用于生物固定的植入物。在本文中,提出了梯度细胞结构,用于提高植入骨界面的稳定性。作为一个示例研究,作者用梯度孔隙率开发出一种新的髋臼植入物,用于髋关节置换率。具有细胞结构的梯度多孔髋臼成分可以匹配骨骼的弹性。材料在接头铰接表面的骨植入界面处的高孔隙率自适应地分布于固体金属。新的髋臼假体将用金属型轴承代替金属乙烯轴承,以较少磨损。制定了髋臼部件的设计问题,并阐述了要求列表。提出了具有分级蜂窝结构的假体的详细设计。根据设计要求,设计概念与现有产品进行了验证。

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