Advanced Surface Treatments for Improving the Biocompatibility of Prosthesis and Medical Implants

J. A. García, P. J. Rivero, R. Ortiz, I. Quintana, R. Rodríguez
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引用次数: 3

Abstract

During the last two decades, numerous surface treatments have been developed to improve the biocompatibility of different types of prosthesis and other medical implants. Some of these devices are subject to demanding loading and friction conditions (e.g., hip, knee, and spine prosthesis). However, for other implants, there are more specific requirements as it happens for coronary stents or pacemaker electrodes. The materials used for the manufac - ture of the aforementioned devices are subjected to very high restrictions in terms of biocompatibility, in particular on chemical composition, corrosion resistance, or ion release. As a consequence, most of prosthesis and other implants are made of a limited number of materials such as titanium alloys, stainless steels, cobalt-chromium alloys, UHMWPE, or PEEK. Unfortunately, from a strict point of view, none of these materials meet all the require ments that would be desirable in terms of durability and prevention of infections and inflam - matory processes. Coatings and other surface treatments have been developed to solve these problems and to improve biocompatibility. In this chapter, we present an updated review of the most used surface engineering technologies for biomaterials, like novel PVD coatings, ion implantation, and other plasma spray treatments, as well as a critical review of the char- acterization techniques. This study is completed with an insight into the future of the field.
改善假体和医用植入物生物相容性的先进表面处理
在过去的二十年中,已经开发了许多表面处理方法来改善不同类型的假体和其他医疗植入物的生物相容性。其中一些装置需要承受苛刻的载荷和摩擦条件(例如,髋关节、膝关节和脊柱假体)。然而,对于其他植入物,就像冠状动脉支架或起搏器电极一样,有更具体的要求。用于制造上述设备的材料在生物相容性方面受到非常高的限制,特别是在化学成分,耐腐蚀性或离子释放方面。因此,大多数假体和其他植入物都是由有限数量的材料制成的,如钛合金、不锈钢、钴铬合金、超高分子量聚乙烯或PEEK。不幸的是,从严格的角度来看,这些材料都不符合耐久性和预防感染和炎症过程的所有要求。为了解决这些问题和提高生物相容性,人们开发了涂层和其他表面处理方法。在本章中,我们介绍了生物材料中最常用的表面工程技术,如新型PVD涂层、离子注入和其他等离子喷涂处理,以及对表征技术的重要回顾。这项研究完成后,对该领域的未来有了深入的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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