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首页> 外文期刊>Journal of Biomechanics >Metal ion release barrier function and biotribological evaluation of a zirconium nitride multilayer coated knee implant under highly demanding activities wear simulation
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Metal ion release barrier function and biotribological evaluation of a zirconium nitride multilayer coated knee implant under highly demanding activities wear simulation

机译:金属离子释放障碍功能和氮化锆多层涂层膝盖植入物在高苛刻的活动下磨损模拟的生物学评价

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摘要

Total knee arthroplasty is a well established treatment for degenerative joint disease, which is also performed as a treatment in younger and middle-aged patients who have a significant physical activity and high life expectancy. However, complications may occur due to biological responses to wear particles, as well as local and systemic hypersensitivity reactions triggered by metal ions and particles such as cobalt, chromium and molybdenum. The purpose of the study was to perform a highly demanding activities (HDA) knee wear simulation in order to compare the wear characteristics and metal ion release barrier function of a zirconium nitride (ZrN) coated knee implant, designed for patients with suspected metal ion hypersensitivity, against an uncoated knee implant made out of CoCrMo. The load profiles were applied for 5 million HDA cycles, which represent 15-30 years of in vivo service depending on the activity level of the patient. Results showed a significant wear rate reduction for the coated group (1.01 +/- 0.29 mg/million cycles) in comparison with the uncoated group (2.89 +/- 1.04 mg/million cycles). The zirconium nitride coating showed no sign of scratches nor delamination during the wear simulation, whereas the uncoated femurs showed characteristic wear scratches in the articulation areas. Furthermore, the metal ion release from the coated implants was reduced up to three orders of magnitude in comparison with the uncoated implants. These results demonstrate the efficiency of zirconium nitride coated knee implants to reduce wear as well as to substantially reduce metal ion release in the knee joint. (C) 2018 Elsevier Ltd. All rights reserved.
机译:全膝关节置换术是一种成熟的退行性关节疾病的治疗,其也被作为具有重要身体活动和高预期寿命的年轻和中年患者的治疗方法。然而,由于生物反应,可能发生并发症,以磨损颗粒,以及由金属离子和颗粒如钴,铬和钼触发的局部和系统性超敏反应。该研究的目的是进行高苛刻的活性(HDA)膝盖磨损模拟,以比较氮化锆(ZrN)涂层膝关节植入物的磨损特性和金属离子释放势函数,专为疑似金属离子超敏反应的患者设计,针对由CocroMo制成的未涂层的膝盖植入物。载有500万HDA循环的负载型材,根据患者的活动水平,占体内服务的15-30岁。结果表明,与未涂覆的组(2.89 +/- 1.04毫克/百万个循环)相比,涂层组(1.01 +/- 0.29毫克/百万次循环)显着减少了显着的磨损率。氮化锆涂层在磨损模拟期间没有划痕和分层的迹象显示,而未涂覆的股骨在关节区域中显示出特征磨损。此外,与未涂覆的植入物相比,来自涂覆植入物的金属离子释放最多可减少三个数量级。这些结果表明了氮化锆涂覆的膝盖植入物的效率,以减少磨损,以及基本上减少膝关节中的金属离子释放。 (c)2018年elestvier有限公司保留所有权利。

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