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Novel concept of a modular hip implant could contribute to less implant failure in THA: a hypothesis

机译:模块化髋关节植入物的新概念可能导致THA的植入失败较少:假设

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摘要

The modularity in total hip arthroplasty (THA) allows orthopaedic surgeons for an exact reconstruction of hip biomechanical parameters especially in revision and tumor arthroplasty. Modular structured femoral stems using taper junctions showed increased implant breakage in the recent past. We hypothesize that a novel modular stem-neck-interface leads to less implant breakage compared to conventional femoral stems. For this purpose, a novel modular femoral stem for THA was to design and manufacture. Therefore, three different variants of interface mechanisms were developed that enable a simple connection between the stem and the neck modules and allow for intra-operatively adjustment. Three prototypes A, B and C were manufactured and subsequently dynamic fatigue (ISO 7206–6) and body donor tested. Modularity in THA is mainly applied in THA as well as in revision and tumor arthroplasty. Modular implants are barely used because of the high risk of breakage. Another risks in this context are taper fretting, corrosion and disconnection. With the novel design, it should be possible to detach the stem and neck module intra-operatively to adapt the anatomical situation. The novel coupling mechanism of the rotating interface seems to be the most suitable for a secure stem-neck connection and is characterized by good intraoperative handling.
机译:总髋关节关节置换术(THA)的模块化允许整形外科医生进行髋关节生物力学参数的精确重建,尤其是在修改和肿瘤关节置换术中。使用锥形交叉点的模块化结构股骨茎显示出近期的植入式植入量增加。与传统的股骨杆相比,我们假设一种新型模块化茎颈界面导致植入性较少的植入断裂。为此目的,用于Tha的新型模块化股杆是设计和制造。因此,开发了三种不同的界面机构变型,其能够在杆和颈部模块之间进行简单的连接,并允许可操作地调节。制造三种原型A,B和C,随后进行动态疲劳(ISO 7206-6)和体供体测试。 THA中的模块性主要应用于THA以及修改和肿瘤关节置换术。由于破损风险高,模块化植入物几乎没有使用。这种背景下的另一个风险是锥形烦恼,腐蚀和断开。利用新颖的设计,应该可以在可操作地拆下杆和颈部模块以适应解剖情况。旋转界面的新颖耦合机构似乎是最适合于安全的杆颈连接,其特征在于良好的术中处理。

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