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Status of surface modification techniques for artificial hip implants

机译:人工髋关节植入物表面改性技术的现状

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Surface modification techniques have been developed significantly in the last couple of decades for enhanced tribological performance of artificial hip implants. Surface modification techniques improve biological, chemical and mechanical properties of implant surfaces. Some of the most effective techniques, namely surface texturing, surface coating, and surface grafting, are applied to reduce the friction and wear of artificial implants. This article reviews the status of the developments of surface modification techniques and their effects on commonly used artificial joint implants. This study focused only on artificial hip joint prostheses research of the last 10 years. A total of 27 articles were critically reviewed and categorized according to surface modification technique. The literature reveals that modified surfaces exhibit reduced friction and enhanced wear resistance of the contact surfaces. However, the wear rates are still noticeable in case of surface texturing and surface coating. The associated vortex flow aids to release entrapped wear debris and thus increase the wear particles generation in case of textured surfaces. The earlier delamination of coating materials due to poor adhesion and graphitization transformation has limited the use of coating techniques. Moreover, the produced wear debris has adverse effects on biological fluid. Conversely, the surface grafting technique provides phospholipid like layer that exhibited lower friction and almost zero wear rates even after a longer period of friction and wear test. The findings suggest that further investigations are required to identify the role of surface grafting on film formation and heat resistance ability under physiological hip joint conditions for improved performance and longevity of hip implants.
机译:在过去的几十年中,表面改性技术得到了显着发展,以增强人工髋关节植入物的摩擦学性能。表面改性技术改善了植入物表面的生物学,化学和机械性能。一些最有效的技术(即表面纹理化,表面涂层和表面接枝)可用于减少人造植入物的摩擦和磨损。本文回顾了表面改性技术的发展现状及其对常用人工关节植入物的影响。这项研究仅专注于最近10年的人工髋关节假体研究。根据表面改性技术对总共27篇文章进行了严格审查和分类。文献表明,改性表面表现出减小的摩擦和增强的接触表面的耐磨性。但是,在表面纹理化和表面涂层的情况下,磨损率仍然很明显。相关的涡流有助于释放夹带的磨损碎片,从而在表面带纹理的情况下增加磨损颗粒的产生。由于较差的粘附性和石墨化转变而导致的较早的涂层材料分层限制了涂层技术的使用。此外,产生的磨损碎片对生物流体具有不利影响。相反,表面接枝技术可提供类似磷脂的层,即使经过更长的摩擦和磨损测试,该层仍具有较低的摩擦力和几乎为零的磨损率。研究结果表明,需要进行进一步的研究,以确定在生理性髋关节条件下表面移植对成膜和耐热能力的作用,以改善髋关节植入物的性能和寿命。

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