Kinematics and laxity of a linked total elbow arthroplasty following computer navigated implant positioning.

Q Medicine Computer Aided Surgery Pub Date : 2012-01-01 Epub Date: 2012-07-26 DOI:10.3109/10929088.2012.706644
James R Brownhill, Colin P McDonald, Louis M Ferreira, J W Pollock, James A Johnson, Graham J W King
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引用次数: 3

Abstract

Aseptic loosening in total elbow arthroplasty (TEA) remains the most common cause of long-term failure. While several different mechanisms of implant loosening have been suggested, it is likely that one important underlying cause is implant malpositioning, resulting in changes in joint kinematics and loading. Although use of computer navigation has been shown to improve component positioning in other joints, no such system currently exists for the elbow. This study used real-time computer feedback for humeral, ulnar, and radial component positioning in 11 cadaveric extremities. An elbow motion simulator evaluated joint kinematics. Endosteal abutment of the stems of the humeral and ulnar components precluded optimal positioning in 5 and 6 specimens, respectively. Loss of the normal valgus angulation following elbow arthroplasty (p < 0.05) suggests that errors in humeral component positioning translate directly into changes in joint kinematics during active motion. These findings suggest that although computer navigation can reproduce normal joint kinematics, optimal implant positioning may require a TEA system which allows for some modularity to accommodate the normal variations in osseous morphology of the elbow.

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计算机导航植入物定位后全肘关节置换术的运动学和松弛性。
无菌性松动在全肘关节置换术(TEA)中仍然是长期失败的最常见原因。虽然已经提出了几种不同的假体松动机制,但一个重要的潜在原因可能是假体错位,导致关节运动学和载荷的变化。虽然使用计算机导航已被证明可以改善其他关节的部件定位,但目前还没有这样的系统用于肘关节。本研究采用实时计算机反馈对11具尸体的肱骨、尺骨和桡骨部位进行定位。肘关节运动模拟器评估关节运动学。肱骨和尺骨组件的骨内基台分别在5个和6个标本中妨碍了最佳定位。肘关节置换术后正常外翻角度的丧失(p
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来源期刊
Computer Aided Surgery
Computer Aided Surgery 医学-外科
CiteScore
0.75
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The scope of Computer Aided Surgery encompasses all fields within surgery, as well as biomedical imaging and instrumentation, and digital technology employed as an adjunct to imaging in diagnosis, therapeutics, and surgery. Topics featured include frameless as well as conventional stereotaxic procedures, surgery guided by ultrasound, image guided focal irradiation, robotic surgery, and other therapeutic interventions that are performed with the use of digital imaging technology.
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