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一种碳-碳髋关节假体的研发。

Development of a carbon-carbon hip prosthesis.

作者信息

Christel P, Meunier A, Leclercq S, Bouquet P, Buttazzoni B

出版信息

J Biomed Mater Res. 1987 Aug;21(A2 Suppl):191-218.

PMID:3624286
Abstract

This article deals with the use of carbon-fiber-reinforced-carbon materials for the manufacture of hip prosthesis stems. It considers the manufacturing process of carbon-carbon (C-C) composites made of carbon fibers infiltrated either with dense pyrolytic carbon or silicon carbide (SiC) through chemical vapor infiltration. The chemicophysical properties of these composites are examined according to their structures. The long-term response (2 years) of cortical bone to various types of carbon-carbon was evaluated mainly for bone contact and ingrowth. Carbon-carbon coated with calcium phosphate was found to speed up the bone formation as compared to pyrolytic carbon or SiC coatings. The low modulus of elasticity of the C-C materials could be responsible for quicker bone contact as compared to a much stiffer material like sintered aluminum oxide. The biomechanical performance of C-C hip stems was assessed through (a) implantations into cadaver femurs, (b) fatigue testing, and (c) finite element analysis. These tests showed: (a) a better stress transfer as compared to a metal prosthesis having the same design, (b) no fatigue damage, (c) a computerized stem stress distribution in accordance with the fractures obtained during static mechanical testing.

摘要

本文论述了碳纤维增强碳材料在制造髋关节假体柄中的应用。它考虑了由碳纤维制成的碳 - 碳(C - C)复合材料的制造工艺,这些碳纤维通过化学气相渗透用致密热解碳或碳化硅(SiC)进行渗透。根据这些复合材料的结构对其化学物理性质进行了研究。主要针对骨接触和骨长入评估了皮质骨对各种类型碳 - 碳材料的长期反应(2年)。与热解碳或SiC涂层相比,发现涂有磷酸钙的碳 - 碳材料能加速骨形成。与诸如烧结氧化铝这种刚度大得多的材料相比,C - C材料的低弹性模量可能是实现更快骨接触的原因。通过(a)植入尸体股骨、(b)疲劳测试和(c)有限元分析对C - C髋关节柄的生物力学性能进行了评估。这些测试表明:(a)与具有相同设计的金属假体相比,应力传递更好;(b)无疲劳损伤;(c)计算机化的柄应力分布与静态力学测试期间获得的骨折情况一致。

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