关节置换术中承载材料的损伤和磨损:实验室方法综述

Q3 Biochemistry, Genetics and Molecular Biology Biomaterials and biosystems Pub Date : 2021-12-01 DOI:10.1016/j.bbiosy.2021.100028
Raelene M Cowie, Louise M Jennings
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引用次数: 4

摘要

当骨、骨水泥或金属颗粒等硬颗粒被困在关节表面之间时,就会发生关节置换术轴承材料的第三体磨损。这可能会加速种植体的整体磨损,可能导致早期失效。随着新型轴承材料和涂层的发展,有必要开发和标准化的测试方法,以反映在回收的种植体上看到的第三体损伤。已经开发了许多不同的方案和方法来在实验室中复制第三体磨损,但目前对于模拟这种磨损模式的最佳方法尚无共识,因此需要更好地了解现有方法。本研究的目的是回顾已发表的关节置换承载材料第三体磨损实验模拟方法,讨论不同方法的优点和局限性,设计方法时需要考虑的变量,并突出当前文献中的空白。该方法分为那些引入磨料颗粒到关节关节面和那些其中第三体损伤是直接创建到关节面。然而,发现有许多参数,例如粒度对磨损的影响,尚未完全了解。该研究的结论是,所选择的方法或使用的方法组合应该主要由研究问题来回答和设备的风险分析。
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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Third body damage and wear in arthroplasty bearing materials: A review of laboratory methods

Third body wear of arthroplasty bearing materials can occur when hard particles such as bone, bone cement or metal particles become trapped between the articulating surfaces. This can accelerate overall implant wear, potentially leading to early failure. With the development of novel bearing materials and coatings, there is a need to develop and standardise test methods which reflect third body damage seen on retrieved implants. Many different protocols and approaches have been developed to replicate third body wear in the laboratory but there is currently no consensus as to the optimal method for simulating this wear mode, hence the need to better understand existing methods. The aim of this study was to review published methods for experimental simulation of third body wear of arthroplasty bearing materials, to discuss the advantages and limitations of different approaches, the variables to be considered when designing a method and to highlight gaps in the current literature. The methods were divided into those which introduced abrasive particles into the articulating surfaces of the joint and those whereby third body damage is created directly to the articulating surfaces. However, it was found that there are a number of parameters, for example the influence of particle size on wear, which are not yet fully understood. The study concluded that the chosen method or combination of methods used should primarily be informed by the research question to be answered and risk analysis of the device.

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CiteScore
4.10
自引率
0.00%
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审稿时长
25 days
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