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The taper corrosion pattern observed for one bi-modular stem design is related to geometry-determined taper mechanics

机译:对于一个双模块阀杆设计观察到的锥形腐蚀模式与几何确定的锥形力学有关

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摘要

Bi-modular primary hip stems exhibit high revision rates owing to corrosion at the stem-neck taper, and are associated with local adverse tissue reactions. The aim of this study was to relate the wear patterns observed for one bi-modular design to its design-specific stem-neck taper geometry. Wear patterns and initial geometry of the taper junctions were determined for 27 retrieved bi-modular primary hip arthroplasty stems (Rejuvenate, Stryker Orthopaedics) using a tactile coordinate-measuring device. Regions of high-gradient wear patterns were additionally analyzed via optical and electron microscopy. The determined geometry of the taper junction revealed design-related engagement at its opening (angle mismatch), concentrated at the medial and lateral apexes (axes mismatch). A patch of retained topography on the proximal medial neck-piece taper apex was observed, surrounded by regions of high wear. On the patch, a deposit from the opposing female stem taper—containing Ti, Mo, Zr, and O—was observed. High stress concentrations were focused at the taper apexes owing to the specific geometry. A medial canting of the components may have augmented the inhomogeneous stress distributions in vivo. In the regions with high normal loads interfacial slip and consequently fretting was inhibited, which explains the observed pattern of wear.
机译:双模初级髋关节茎在茎颈锥度处由于腐蚀而表现出高翻修率,并与局部不良组织反应有关。这项研究的目的是将一种双模块设计所观察到的磨损模式与其特定于设计的杆颈锥度几何形状相关联。使用触觉坐标测量设备确定了27个取回的双模块初次髋关节置换术茎(Rejuvenate,Stryker Orthopaedics)的锥形连接的磨损模式和初始几何形状。还通过光学和电子显微镜分析了高梯度磨损模式区域。锥形连接的确定的几何形状揭示了其开口处的设计相关接合(角度不匹配),集中在内侧和外侧顶点(轴不匹配)。观察到在近端内侧颈锥渐尖处保留了地形,并被高磨损区域包围。在贴片上,观察到来自相对的雌性茎锥的沉积物-含有Ti,Mo,Zr和O-。由于特定的几何形状,高应力集中在锥顶。组件的内侧倾斜可能会增加体内的不均匀应力分布。在正常载荷较高的区域,界面滑移和因此产生的微动受到抑制,这解释了观察到的磨损模式。

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