Chevalier Jérôme
National Institute of Applied Science (INSA), UMR CNRS 5510, 20 Avenue Albert Einstein, 69621 Villeurbanne Cedex, France.
Biomaterials. 2006 Feb;27(4):535-43. doi: 10.1016/j.biomaterials.2005.07.034. Epub 2005 Sep 6.
The failure events of Prozyr femoral heads in 2001-2002 have opened a strong, controversial issue on the future of zirconia as a biomaterial. The aim of this paper is to review and analyze the current knowledge on ageing process and on its effect on the long term performance of implants in order to distinguish between scientific facts and speculation. Current state of the art shows the strong variability of zirconia to in vivo degradation, as a consequence of the strong influence of processing on ageing process. As different zirconia from different vendors have different process related microstructure, there is a need to assess their ageing sensitivity with advanced and accurate techniques, and ISO standards should be modified, especially to gain confidence from clinicians. There is a trend today to develop alumina-zirconia composites as an alternative to monolithic alumina and zirconia: the issue of ageing is also discussed for these composites.
2001年至2002年普罗齐尔(Prozyr)股骨头的失效事件引发了一个关于氧化锆作为生物材料未来的激烈且有争议的问题。本文旨在回顾和分析关于老化过程及其对植入物长期性能影响的现有知识,以便区分科学事实与推测。当前的技术水平表明,由于加工对老化过程的强烈影响,氧化锆在体内降解存在很大变异性。由于不同供应商的不同氧化锆具有与工艺相关的不同微观结构,因此需要用先进且精确的技术评估它们的老化敏感性,并且应修改ISO标准,尤其是要获得临床医生的信任。如今有一种开发氧化铝 - 氧化锆复合材料以替代整体氧化铝和氧化锆的趋势:本文也讨论了这些复合材料的老化问题。