Suppr超能文献

髋关节植入物模块化颈部材料及组装方法对疲劳寿命和牵张力的影响。

Effects of hip implant modular neck material and assembly method on fatigue life and distraction force.

作者信息

Aljenaei Fahad, Catelas Isabelle, Louati Hakim, Beaulé Paul E, Nganbe Michel

机构信息

Department of Mechanical Engineering, University of Ottawa, Ottawa, Ontario, Canada.

Department of Surgery, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

J Orthop Res. 2017 Sep;35(9):2023-2030. doi: 10.1002/jor.23481. Epub 2016 Dec 14.

Abstract

Hip implant neck fractures and adverse tissue reactions associated with fretting-corrosion damage at modular interfaces are a major source of concern. Therefore, there is an urgent clinical need to develop accurate in vitro test procedures to better understand, predict and prevent in vivo implant failures. This study aimed to simulate in vivo fatigue fracture and distraction of modular necks in an in vitro setting, and to assess the effects of neck material (Ti6Al4V vs. CoCrMo) and assembly method (hand vs. impact) on the fatigue life and distraction of the necks. Fatigue tests were performed on the cementless PROFEMUR® Total Hip Modular Neck System under two different loads and number of cycles: 2.3 kN for 5 million cycles, and 7.0 kN for 1.3 million cycles. The developed in vitro simulation setup successfully reproduced in vivo modular neck fracture mode and location. Neck failure occurred at the neck-stem taper and the fracture ran from the distal lateral neck surface to the proximal medial entry point of the neck into the stem. None of the necks failed under the 2.3 kN load. However, all hand-assembled Ti6Al4V necks failed under the 7.0 kN load. In contrast, none of the hand-assembled CoCrMo necks and impact-assembled necks (Ti6Al4V or CoCrMo) failed under this higher load. In conclusion, Ti6Al4V necks were more susceptible to fatigue failure than CoCrMo necks. In addition, impact assembly substantially improved the fatigue life of Ti6Al4V necks and also led to overall higher distraction forces for both neck materials. Overall, this study shows that the material and assembly method can affect the fatigue strength of modular necks. Finally, improper implant assembly during surgery may result in diminished modular neck survivability and increased failure rates. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:2023-2030, 2017.

摘要

髋关节植入物颈部骨折以及与模块化界面微动腐蚀损伤相关的不良组织反应是主要的关注问题。因此,临床迫切需要开发准确的体外测试程序,以更好地理解、预测和预防体内植入物失效。本研究旨在在体外环境中模拟模块化颈部的体内疲劳骨折和牵张,并评估颈部材料(Ti6Al4V与CoCrMo)和组装方法(手动与冲击)对颈部疲劳寿命和牵张的影响。对非骨水泥型PROFEMUR®全髋关节模块化颈部系统在两种不同载荷和循环次数下进行疲劳测试:2.3kN,500万次循环;7.0kN,130万次循环。所开发的体外模拟装置成功再现了体内模块化颈部骨折模式和位置。颈部失效发生在颈部-柄部锥度处,骨折从颈部远端外侧表面延伸至颈部近端内侧进入柄部的入口点。在2.3kN载荷下,没有颈部失效。然而,所有手动组装的Ti6Al4V颈部在7.0kN载荷下均失效。相比之下,在这种较高载荷下,没有手动组装的CoCrMo颈部和冲击组装的颈部(Ti6Al4V或CoCrMo)失效。总之,Ti6Al4V颈部比CoCrMo颈部更容易发生疲劳失效。此外,冲击组装显著提高了Ti6Al4V颈部的疲劳寿命,并且还导致两种颈部材料的整体牵张力更高。总体而言,本研究表明材料和组装方法会影响模块化颈部的疲劳强度。最后,手术期间植入物组装不当可能导致模块化颈部生存率降低和故障率增加。©2016骨科研究协会。由威利期刊公司出版。《矫形外科研究杂志》35:2023 - 2030,2017年。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验