J. Vernon Luck Sr MD Orthopaedic Research Center at Orthopaedic Institute for Children/UCLA, Los Angeles, California.
J Biomed Mater Res B Appl Biomater. 2018 Apr;106(3):1148-1155. doi: 10.1002/jbm.b.33912. Epub 2017 May 26.
A peculiar type of surface pitting damage to revised joint replacement implant metal surfaces has been attributed to cellular activity and termed "inflammatory cell-induced-corrosion." We visually examined 1859 explanted metal implants to document the presence and extent of these features. The data was used to examine correlations between these features and the implant material, and modularity as well as clinical variables. The features were observed in approximately 77% of modular and 30% of monobloc hip implants in a variety of metals, as well as to some degree in various other implants. To test the possibility that these features were an artefact of electrocautery damage during revision surgery, a cleaned, flat, polished, CoCr disk was exposed to a variety of electrocautery interactions. This led to the production of pits and markings comparable to the published damage and to the damage found on the explants we examined. It is concluded that electrocautery damage rather than cellular activity is the cause of these features. Although rarely reported, this damage may be associated with femoral neck fracture. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1148-1155, 2018.
一种特殊类型的表面点蚀损伤已归因于细胞活动,并被称为“炎性细胞诱导腐蚀”。我们对 1859 个植入的金属植入物进行了肉眼检查,以记录这些特征的存在和程度。这些数据用于检查这些特征与植入物材料、模块性以及临床变量之间的相关性。这些特征大约出现在各种金属的 77%的模块化和 30%的单块髋关节植入物中,以及各种其他植入物中。为了测试这些特征是否是翻修手术中电灼损伤的假象,我们将一个清洁、平整、抛光的 CoCr 圆盘暴露于各种电灼作用下。这导致产生了与已发表的损伤以及我们检查的植入物上的损伤相当的凹痕和标记。结论是电灼损伤而不是细胞活动是这些特征的原因。尽管很少报道,但这种损伤可能与股骨颈骨折有关。© 2017 Wiley Periodicals, Inc. J 生物医学材料研究部分 B: 应用生物材料,106B:1148-1155, 2018.