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氮化钛涂层股骨部件的高耐磨性:一项检索分析。

High wear resistance of femoral components coated with titanium nitride: a retrieval analysis.

机构信息

Biomechanics and Implant Technology Research Laboratory, Department of Orthopaedics, University Medicine Rostock, Doberaner Str. 142, 18057, Rostock, Germany.

DOT GmbH, Charles-Darwin-Ring 1a, 18059, Rostock, Germany.

出版信息

Knee Surg Sports Traumatol Arthrosc. 2018 Sep;26(9):2630-2639. doi: 10.1007/s00167-017-4578-7. Epub 2017 May 20.

Abstract

PURPOSE

The objective of this study was to evaluate the in vivo wear resistance of cobalt-chromium femoral components coated with titanium nitride (TiN). Our null hypothesis was that the surface damage and the thickness of the TiN coating do not correlate with the time in vivo.

METHODS

Twenty-five TiN-coated bicondylar femoral retrievals with a mean implantation period of 30.7 ± 11.7 months were subjected to an objective surface damage analysis with a semi-quantitative assessment method. A visual examination of scratches, indentations, notches and coating breakthroughs of the surfaces was performed. The roughness and the coating thickness of the TiN coating were evaluated in the main articulation regions.

RESULTS

Narrow scratches and indentations in the range of low flexion angles on the retrieval surfaces were the most common modes of damage. There was no evidence of delamination on the articulation surface but rather at the bottom of isolated severe indentations or notches. An analysis of three retrievals revealed a coating breakthrough in the patellofemoral joint region, resulting from patella maltracking and a dislocation. The arithmetical mean roughness of the TiN surface slightly increased with the implantation period. In contrast, the maximum peak height of the roughness profile was reduced at the condyles of the retrieved components in comparison with new, unused surfaces. No significant association between the coating thickness and implantation period was determined. Moreover, the measured values were retained in the range of the initial coating thickness even after several years of in vivo service.

CONCLUSIONS

As was demonstrated by the results of this study, the surface damage to the TiN coating did not deteriorate with the implantation period. The calculated damage scores and the measured coating thickness in particular both confirmed that the TiN coating provides low wear rates. Our findings support the use of wear-resistant TiN-coated components in total knee arthroplasty with the objective of reducing the risk of aseptic loosening. However, in terms of TiN-coated femoral components, particular attention should be paid to a correct patellar tracking in order to avoid wear propagation at the implant.

摘要

目的

本研究旨在评估涂覆氮化钛(TiN)的钴铬股骨部件的体内耐磨性能。我们的零假设是,表面损伤和 TiN 涂层的厚度与体内时间无关。

方法

对 25 个 TiN 涂层双髁股骨取出物进行了客观的表面损伤分析,采用半定量评估方法。对表面的划痕、压痕、凹口和涂层穿透进行了目视检查。评估了 TiN 涂层在主要关节区域的粗糙度和涂层厚度。

结果

在取出物表面低弯曲角度范围内的窄划痕和压痕是最常见的损伤模式。在关节表面没有分层的证据,但在孤立的严重压痕或凹口的底部有分层的证据。对三个取出物的分析显示,在髌股关节区域出现了涂层穿透,这是由于髌骨轨迹不良和脱位引起的。TiN 表面的算术平均粗糙度随植入时间略有增加。相比之下,与新的、未使用的表面相比,在取出组件的髁间区,粗糙度轮廓的最大峰高降低了。未发现涂层厚度与植入时间之间存在显著相关性。此外,即使在体内使用多年后,测量值仍保持在初始涂层厚度范围内。

结论

正如本研究结果所示,TiN 涂层的表面损伤并未随植入时间而恶化。计算的损伤评分和测量的涂层厚度,特别是都证实了 TiN 涂层具有低磨损率。我们的研究结果支持在全膝关节置换术中使用耐磨的 TiN 涂层部件,以降低无菌性松动的风险。然而,就 TiN 涂层股骨部件而言,应特别注意正确的髌骨轨迹,以避免在植入物处发生磨损扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6de0/6105138/338bb8574a34/167_2017_4578_Fig1_HTML.jpg

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