Hussenbocus S, Kosuge D, Solomon L B, Howie D W, Oskouei R H
Department of Orthopaedics and Trauma, Royal Adelaide Hospital, North Terrace, Adelaide, SA 5000, Australia.
Department of Orthopaedics and Trauma, Royal Adelaide Hospital and Centre for Orthopaedic and Trauma Research, The University of Adelaide, North Terrace, Adelaide, SA 5000, Australia.
Biomed Res Int. 2015;2015:758123. doi: 10.1155/2015/758123. Epub 2015 Apr 14.
Modularity at the head-neck junction of the femoral component in THA became popular as a design feature with advantages of decreasing implant inventory and allowing adjustment of leg length, offset, and soft tissue balancing through different head options. The introduction of a new modular interface to femoral stems that were previously monoblock, or nonmodular, comes with the potential for corrosion at the taper junction through mechanically assisted crevice corrosion. The incidence of revision hip arthroplasty is on the rise and along with improved wear properties of polyethylene and ceramic, use of larger femoral head sizes is becoming increasingly popular. Taper corrosion appears to be related to all of its geometric parameters, material combinations, and femoral head size. This review article discusses the pathogenesis, risk factors, clinical assessment, and management of taper corrosion at the head-neck junction.
在全髋关节置换术中,股骨部件头颈交界处的模块化作为一种设计特点变得流行起来,其优点是减少植入物库存,并通过不同的股骨头选项实现腿长、偏心距和软组织平衡的调整。将新的模块化接口引入先前为整体式或非模块化的股骨干,在锥形交界处存在通过机械辅助缝隙腐蚀而发生腐蚀的可能性。髋关节翻修置换术的发生率正在上升,随着聚乙烯和陶瓷磨损性能的改善,使用更大尺寸的股骨头越来越普遍。锥形腐蚀似乎与其所有几何参数、材料组合和股骨头尺寸有关。这篇综述文章讨论了头颈交界处锥形腐蚀的发病机制、危险因素、临床评估和处理。