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在人工髋关节假体模拟器中进行摩擦学与腐蚀相互作用的现场电化学研究。

In-situ electrochemical study of interaction of tribology and corrosion in artificial hip prosthesis simulators.

机构信息

Corrosion and Protection Center, Key Laboratory for Environmental Fracture (MOE), University of Science and Technology Beijing, Beijing 100083, People's Republic of China.

出版信息

J Mech Behav Biomed Mater. 2013 Feb;18:191-9. doi: 10.1016/j.jmbbm.2012.08.009. Epub 2012 Sep 1.

Abstract

The second generation Metal-on-Metal (MoM) hip replacements have been considered as an alternative to commonly used Polyethylene-on-Metal (PoM) joint prostheses due to polyethylene wear debris induced osteolysis. However, the role of corrosion and the biofilm formed under tribological contact are still not fully understood. Enhanced metal ion concentrations have been reported widely from hair, blood and urine samples of patients who received metal hip replacements and in isolated cases when abnormally high levels have caused adverse local tissue reactions. An understanding of the origin of metal ions is really important in order to design alloys for reduced ion release. Reciprocating pin-on-plate wear tester is a standard instrument to assess the interaction of corrosion and wear. However, more realistic hip simulator can provide a better understanding of tribocorrosion process for hip implants. It is very important to instrument the conventional hip simulator to enable electrochemical measurements. In this study, simple reciprocating pin-on-plate wear tests and hip simulator tests were compared. It was found that metal ions originated from two sources: (a) a depassivation of the contacting surfaces due to tribology (rubbing) and (b) corrosion of nano-sized wear particles generated from the contacting surfaces.

摘要

第二代金属对金属(MoM)髋关节置换物已被认为是一种替代常用的聚乙烯对金属(PoM)关节假体的选择,因为聚乙烯磨损颗粒会导致骨溶解。然而,腐蚀和在摩擦接触下形成的生物膜的作用仍未完全了解。在接受金属髋关节置换物的患者的头发、血液和尿液样本中,以及在个别情况下当异常高的水平引起异常的局部组织反应时,广泛报道了增强的金属离子浓度。为了设计减少离子释放的合金,了解金属离子的来源非常重要。往复销钉-板磨损试验机是评估腐蚀和磨损相互作用的标准仪器。然而,更现实的髋关节模拟器可以更好地了解髋关节植入物的摩擦腐蚀过程。对传统髋关节模拟器进行仪器化以进行电化学测量非常重要。在这项研究中,比较了简单的往复销钉-板磨损试验和髋关节模拟器试验。结果发现,金属离子来源于两个来源:(a)由于摩擦学(摩擦)而使接触表面脱钝化,(b)来自接触表面的纳米级磨损颗粒的腐蚀。

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