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髋关节假体松动:一篇非常个人化的综述。

Hip prosthetic loosening: A very personal review.

作者信息

Mjöberg Bengt

机构信息

Department of Orthopedics, Lund University, Lund SE-221 00, Sweden.

出版信息

World J Orthop. 2021 Sep 18;12(9):629-639. doi: 10.5312/wjo.v12.i9.629.

Abstract

Hip prosthetic loosening is often difficult to detect at an early stage, and there has been uncertainty for a long time as to when the loosening occurs and thus to the basic causes. By comparing different diagnostic methods, we found that loosening is best defined as prosthetic migration and measured by radiostereometric analysis. Convincing evidence indicates that poor interlock, poor bone quality, and resorption of a necrotic bone bed may initiate loosening during or shortly after surgery; this forms the basis of the theory of early loosening. Biomechanical factors do affect the subsequent progression of loosening, which may increase subclinically during a long period of time. Eventually, the loosening may be detected on standard radiographs and may be interpreted as late loosening but should to be interpreted as late detection of loosening. The theory of early loosening explains the rapid early migration, the development of periprosthetic osteolysis and granulomas, the causality between wear and loosening, and largely the epidemiology of clinical failure of hip prostheses. Aspects discussed are definition of loosening, the pattern of early migration, the choice of migration threshold, the current understanding of loosening, a less exothermic bone cement, cemented taper-slip stems, a new exciting computed tomography-based technique for simpler implant migration studies, and research suggestions.

摘要

髋关节假体松动在早期往往难以检测,长期以来对于松动何时发生以及其根本原因一直存在不确定性。通过比较不同的诊断方法,我们发现松动最好定义为假体移位,并通过放射立体测量分析来测量。有确凿证据表明,手术过程中或术后不久,假体与骨的嵌合不佳、骨质量差以及坏死骨床的吸收可能引发松动;这构成了早期松动理论的基础。生物力学因素确实会影响松动的后续进展,在很长一段时间内可能会在亚临床水平上增加。最终,松动可能在标准X线片上被检测到,并可能被解释为晚期松动,但实际上应被解释为松动的晚期发现。早期松动理论解释了早期快速移位、假体周围骨溶解和肉芽肿的形成、磨损与松动之间的因果关系,以及很大程度上髋关节假体临床失败的流行病学情况。讨论的内容包括松动的定义、早期移位模式、移位阈值的选择、对松动的当前认识、放热较少的骨水泥、骨水泥固定的锥形滑移柄、一种用于更简单的植入物移位研究的基于计算机断层扫描的新的令人兴奋的技术以及研究建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf18/8472441/360789449a4f/WJO-12-629-g001.jpg

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