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活动平台全膝关节置换术:减少磨损的设计因素

Mobile-bearing total knee arthroplasty: design factors in minimizing wear.

作者信息

Dennis Douglas A, Komistek Richard D

机构信息

University of Tennessee, Knoxville, TN, USA.

出版信息

Clin Orthop Relat Res. 2006 Nov;452:70-7. doi: 10.1097/01.blo.0000238776.27316.d6.

Abstract

Premature polyethylene wear is a major cause of total knee arthroplasty (TKA) failure. It has been attributed to numerous factors including poor surgical technique, reduced polyethylene thickness, poor locking mechanisms of modular fixed bearing tibial components, gamma irradiation sterilization techniques in the presence of oxygen, and low conformity implant designs. The incidence of implantation of TKA into younger patients who have increased activity requirements and longevity expectations is increasing. This requires continued analysis of design features lessening polyethylene wear. The purpose of this manuscript is to review clinical and basic scientific studies of factors influencing polyethylene wear, focusing on the potential benefits of mobile bearing TKA which potentially reduce long-term polyethylene wear by providing increased implant conformity and reduced polyethylene contact stresses. In vivo kinematic studies have shown self-alignment of the polyethylene bearing with the femoral component typically occurs in rotating platform TKA designs which should hypothetically lessen polyethylene surface stresses, minimize stabilizing post impingement, and increase the potential for enhanced polyethylene longevity.

摘要

聚乙烯过早磨损是全膝关节置换术(TKA)失败的主要原因。其归因于众多因素,包括手术技术欠佳、聚乙烯厚度减小、模块化固定承重胫骨组件的锁定机制不佳、有氧情况下的伽马射线辐照灭菌技术以及低匹配度的植入物设计。将TKA植入对活动需求增加且预期寿命延长的年轻患者中的情况正在增多。这就需要持续分析可减少聚乙烯磨损的设计特征。本手稿的目的是回顾影响聚乙烯磨损因素的临床和基础科学研究,重点关注活动承重TKA的潜在益处,其通过提高植入物匹配度和降低聚乙烯接触应力,有可能减少长期聚乙烯磨损。体内运动学研究表明,聚乙烯承重部件与股骨部件的自对准通常发生在旋转平台TKA设计中,这理论上应能减轻聚乙烯表面应力、使稳定柱撞击最小化,并增加聚乙烯延长使用寿命的可能性。

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