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模块化全膝关节假体非关节表面的聚乙烯损伤

Polyethylene damage on the nonarticular surface of modular total knee prostheses.

作者信息

Cuckler John M, Lemons Jack, Tamarapalli J R, Beck Preston

机构信息

Orthopaedic Research Laboratory, Division of Orthopaedic Surgery, University of Alabama at Birmingham, Birmingham, AL 35294-3409, USA.

出版信息

Clin Orthop Relat Res. 2003 May(410):248-53. doi: 10.1097/01.blo.0000063794.32430.05.

Abstract

Modular tibial implants submitted for retrieval analysis were examined for evidence of cold flow, wear, or polyethylene failure. All retrieved components showed areas of cold flow and wear. Significant damage, defined as pitting, gouging, or delamination was observed in 77% of the retrieved implants. Cold flow deformation commonly was observed at the junction of the polyethylene and locking mechanisms or junction of the polyethylene and the edge of the tibial tray. Control implants did not show such areas of damage. Clinical factors such as age, activity status, length of implantation, limb alignment before revision, and thickness of the tibial insert did not correlate with backside wear. No association was found between polyethylene thickness, time of implantation, limb or prosthesis alignment, or activity status or weight of the patient.

摘要

对提交进行取出分析的模块化胫骨植入物进行检查,以寻找冷流、磨损或聚乙烯失效的证据。所有取出的部件均显示出冷流和磨损区域。在77%的取出植入物中观察到显著损伤,定义为点蚀、 gouging(此处可能有误,推测为“凿痕”之类意思)或分层。冷流变形常见于聚乙烯与锁定机构的交界处或聚乙烯与胫骨托边缘的交界处。对照植入物未显示出此类损伤区域。年龄、活动状态、植入时间、翻修前肢体对线情况以及胫骨插入物厚度等临床因素与背面磨损无关。在聚乙烯厚度、植入时间、肢体或假体对线情况、患者活动状态或体重之间未发现关联。

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