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颞下颌关节假体周围软组织长达 8 年后的组织学研究结果。

Histological findings in soft tissues around temporomandibular joint prostheses after up to eight years of function.

机构信息

Department of Maxillofacial Surgery, Karolinska University Hospital, Stockholm, Sweden.

出版信息

Int J Oral Maxillofac Surg. 2011 Jan;40(1):18-25. doi: 10.1016/j.ijom.2010.09.009. Epub 2010 Nov 1.

Abstract

Early temporomandibular joint (TMJ) prostheses articulated on material with poor wear resistance. Wear debris was deposited in the surrounding tissues, causing severe foreign body cell reactions. Recent TMJ prostheses use modern orthopaedic materials, such as ultra high molecular weight polyethylene (UHMWPE) for the fossa component, and cobalt-chromium, or cobalt-chromium-molybdenum for the condylar head. These designs are reliable in long-term follow-up studies. The authors report histological findings in soft tissue samples obtained from around two types of TMJ prostheses after up to 8 years of function. The devices were four Biomet (Biomet Microfixation, Jacksonville, FL, USA), and two TMJ Concepts (TMJ Concepts, Ventura, CA, USA). All joint capsule samples demonstrated dense, fibrous connective tissue with no inflammatory cells or foreign body reactions. The joint disc tissues showed even denser fibrous connective tissue, free from inflammatory reactions. Some samples from the junction between capsule and disk demonstrated synovial-like tissue. The observations reported in this paper indicate that modern TMJ prostheses with Cr-Co-Mb or Cr-Co articular condyles articulating on UHMWPE fossa components appear to function without foreign body reactions in he surrounding tissues.

摘要

早期的颞下颌关节(TMJ)假体采用耐磨性差的材料进行关节活动。磨损颗粒沉积在周围组织中,引起严重的异物细胞反应。最近的 TMJ 假体使用现代骨科材料,如超高分子量聚乙烯(UHMWPE)作为窝关节组件,以及钴铬或钴铬钼作为髁突头。这些设计在长期随访研究中是可靠的。作者报告了在功能长达 8 年的两种 TMJ 假体周围软组织样本中的组织学发现。这些设备是四个 Biomet(Biomet Microfixation,杰克逊维尔,佛罗里达州,美国)和两个 TMJ Concepts(TMJ Concepts,文图拉,加利福尼亚州,美国)。所有关节囊样本均显示致密的纤维结缔组织,无炎症细胞或异物反应。关节盘组织显示更密集的纤维结缔组织,无炎症反应。一些来自关节囊和关节盘交界处的样本显示出类似滑膜的组织。本文报告的观察结果表明,采用 Cr-Co-Mb 或 Cr-Co 关节突关节在 UHMWPE 窝关节组件上活动的现代 TMJ 假体在周围组织中似乎没有异物反应。

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