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一种仿生聚合物复合材料髋关节假体的设计。

Design of a biomimetic polymer-composite hip prosthesis.

作者信息

Bougherara Habiba, Bureau Martin, Campbell Melissa, Vadean Aurelian, Yahia L'Hocine

机构信息

Laboratory of Innovation and Analysis of Bioperformance, Ecole Polytechnique de Montréal, Montreal, Quebec, Canada.

出版信息

J Biomed Mater Res A. 2007 Jul;82(1):27-40. doi: 10.1002/jbm.a.31146.

Abstract

A new biomimetic composite hip prosthesis (stem) was designed to obtain properties similar to those of the contiguous bone, in particular stiffness, to allow normal loading of the surrounding femoral bone. This normal loading would reduce excessive stress shielding, known to result in bone loss, and micromotions at the bone-implant interface, leading to aseptic prosthetic loosening. The design proposed is based on a hollow substructure made of hydroxyapatite-coated, continuous carbon fiber (CF) reinforced polyamide 12 (PA12) composite with an internal soft polymer-based core. Different composite configurations were studied to match the properties of host tissue. Nonlinear three-dimensional analysis of the hip prosthesis was carried out using a three-dimensional finite element bone model based on the composite femur. The performance of composite-based hip and titanium alloy-based (Ti-6Al-4V) stems embedded into femoral bone was compared. The effect of core stiffness and ply configuration was also analyzed. Results show that stresses in composite stem are lower than those in Ti stem, and that the femoral bone implanted with composite structure sustains more load than the one implanted with Ti stem. Micromotions in the composite stem are significantly smaller than those in Ti stem over the entire bone-implant surface because of the favorable interfacial stress distribution.

摘要

一种新型仿生复合髋关节假体(柄)被设计出来,以获得与相邻骨骼相似的特性,尤其是刚度,从而使周围股骨能够正常受力。这种正常受力将减少已知会导致骨质流失的过度应力屏蔽,以及骨 - 植入物界面处的微动,进而导致无菌性假体松动。所提出的设计基于一种空心子结构,该结构由羟基磷灰石涂层的连续碳纤维(CF)增强聚酰胺12(PA12)复合材料制成,并带有内部软质聚合物基芯。研究了不同的复合结构配置以匹配宿主组织的特性。使用基于复合股骨的三维有限元骨模型对髋关节假体进行了非线性三维分析。比较了嵌入股骨的复合基髋关节柄和钛合金基(Ti - 6Al - 4V)柄的性能。还分析了芯刚度和铺层配置的影响。结果表明,复合柄中的应力低于钛柄中的应力,并且植入复合结构的股骨比植入钛柄的股骨承受更多载荷。由于有利的界面应力分布,复合柄在整个骨 - 植入物表面的微动明显小于钛柄。

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