Institute of Orthopaedics and Musculo-Skeletal Science, University College London and the Royal National Orthopaedic Hospital, Stanmore, Middlesex, HA7 4LP, United Kingdom.
J Orthop Res. 2013 Dec;31(12):2032-9. doi: 10.1002/jor.22461. Epub 2013 Aug 21.
Widespread concern exists about adverse tissue reactions after metal-on-metal (MoM) total hip replacement (THR). Concerns have also been expressed with wear and corrosion of taper junctions in THR. We report the effect of surface finish and contact area associated with a single combination of materials of modular tapers. In an in vitro test, we investigated the head/neck (CoCrMo/Ti) interface of modular THRs using commercially available heads. Wear and corrosion of taper surfaces was compared following a 10 million loading cycle. Surface parameters and profiles were measured before and after testing. Electrochemical static and dynamic corrosion tests were performed under loaded and non-loaded conditions. After the load test, the surface roughness parameters on the head taper were significantly increased where the head/neck contact area was reduced. Similarly, the surface roughness parameters on the head taper were significantly increased where rough neck tapers were used. Corrosion testing showed breaching of the passive film on the rough but not the smooth neck tapers. Thus, surface area and surface finish are important factors in wear and corrosion at modular interfaces.
人们普遍担心金属对金属(MoM)全髋关节置换(THR)后会出现不良的组织反应。人们还对 THR 中锥面的磨损和腐蚀表示担忧。我们报告了与单个组合材料的锥度相关的表面光洁度和接触面积的影响。在一项体外试验中,我们使用市售的头研究了模块化锥度的头颈(CoCrMo/Ti)界面。在经过 1000 万次加载循环后,比较了锥面的磨损和腐蚀情况。在测试前后测量了表面参数和轮廓。在加载和非加载条件下进行了电化学静态和动态腐蚀测试。在负载测试后,头/颈接触面积减小的情况下,头锥面上的表面粗糙度参数显著增加。同样,使用粗糙颈部锥度的情况下,头锥面上的表面粗糙度参数显著增加。腐蚀测试表明,粗糙颈部锥度而不是光滑颈部锥度上的钝化膜被击穿。因此,表面积和表面光洁度是模块界面磨损和腐蚀的重要因素。