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股骨柄骨折与可回收模块化股骨假体的体内腐蚀

Femoral stem fracture and in vivo corrosion of retrieved modular femoral hips.

机构信息

Thayer School of Engineering, Dartmouth College, Hanover, NH 03755, USA.

出版信息

J Arthroplasty. 2012 Aug;27(7):1389-1396.e1. doi: 10.1016/j.arth.2011.11.007. Epub 2011 Dec 29.

Abstract

A series of 78 retrieved modular hip devices were assessed for fretting and corrosion. Damage was common at both the head-neck junction (54% showing corrosion; 88% showing fretting) and at the stem-sleeve junction (88% corrosion; 65% fretting). Corrosion correlated to in vivo duration, patient activity, and metal (vs ceramic) femoral heads but did not correlate to head carbon content. Femoral stem fatigue fracture was observed in seven retrievals; all had severe corrosion, were under increased stress, and were in vivo longer than the non-fractured cohort. This study emphasizes the potential for stem fracture when small diameter femoral stems with large offsets are used in heavy and active patients. Designs which reduce fretting and corrosion in modular implants is warranted as patients demand longer lasting implants.

摘要

对 78 个回收的模块化髋关节装置进行了微动和腐蚀评估。在头颈部交界处(54%显示腐蚀;88%显示微动)和柄套交界处(88%腐蚀;65%微动)都常见到损伤。腐蚀与体内持续时间、患者活动度以及金属(而非陶瓷)股骨头有关,但与股骨头的碳含量无关。在 7 个回收样本中观察到股骨柄疲劳骨折;所有骨折的股骨柄都有严重的腐蚀,承受更大的应力,且体内留存时间长于未骨折队列。本研究强调了在重体力活动患者中使用大偏心距的小直径股骨柄时,存在柄断裂的风险。为了满足患者对长期植入物的需求,有必要设计减少模块化植入物微动和腐蚀的产品。

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