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首页> 外文期刊>Journal of medical engineering & technology >Pre-clinical evaluation of the mechanical properties of a low-stiffness cement-injectable hip stem
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Pre-clinical evaluation of the mechanical properties of a low-stiffness cement-injectable hip stem

机译:低刚度水泥可注射髋部茎的力学性能预临床评价

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In total hip arthroplasty (THA), the femoral stem can be fixed with or without bone cement. Cementless stem fixation is recommended for young and active patients as it eliminates the risk of loss of fixation at the bone–cement and cement–implant interfaces. Cementless fixation, however, suffers from a relatively high early revision rate. In the current research, a novel low-stiffness hip stem was designed, fabricated and tested. The stem design provided the option to inject biodegradable bone cement that could enhance initial stem stability. The stem was made of Ti6Al4V alloy. The proximal portion of the stem was porous, with cubic cells. The stem was fabricated using electron beam melting (EBM) technology and tested in compression and bending. Finite-element analysis was used to evaluate stem performance under a dynamic load representing a stair descending cycle and compare it to the performance of a solid stem with similar geometry. The von Mises stresses and maximum principal strains generated within the bone increased after porous stem insertion compared to solid stem insertion. The low-modulus stem tested in this study has acceptable mechanical properties and generates strain patterns in bone that appear compatible with clinical use.
机译:在总髋关节置换术(THA)中,股骨杆可以用或没有骨水泥固定。对于年轻和活性患者建议使用无硬杆茎固定,因为它消除了骨水泥和水泥植入界面处的固定丧失的风险。然而,无硬固定患有相对高的早期修订率。在目前的研究中,设计了一种新型的低刚度髋杆,制造和测试。茎设计提供了注入可增强初始茎稳定性的可生物降解的骨水泥的选择。茎由Ti6Al4V合金制成。茎的近端部分是多孔的,具有立方细胞。使用电子束熔化(EBM)技术制造杆,并在压缩和弯曲中进行测试。有限元分析用于评估表示阶段下降循环的动态负荷下的茎性能,并将其与具有类似几何形状的固体茎的性能进行比较。与固体茎插入相比,脊髓误差和在骨内产生的最大主体菌株增加。本研究中测试的低模量茎具有可接受的机械性能,并在骨骼中产生应变模式,与临床使用相容。

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