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Parametric Analysis of Orthopedic Screws in Relation to Bone Density

机译:骨密度与骨密度的参数分析

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A global study of geometry and material properties of orthopedic screws was performed, considering not only the effect of each single factor (screw pitch, number of threads, fillet angle, etc.) but also their interactions with respect to bone density.The stress patterns resulting from different screw geometries and bone densities were analyzed using finite element techniques, taking into account different levels of osseointegration between the screw and the bone. These numerical models where validated through experimental pull-out tests, where a pull out force of 120 N produced localized failure of the last thread (stresses above 0.42 MPa). The results of the numerical simulations were then summarised using a multi-factorial parametric analysis. This demonstrated the great relevance of the interaction between bone density and screw pitch, showing that the optimal screw pitch can vary by more than 25% for different densities (0.35 g/cm3 and 0.47 g/cm3, respectively).The parameters calculated by means of the multi-factorial analysis allow the pull out force to be estimated for different osseointegration levels, different screw geometries and material properties, and for different bone densities. The final objective is to determine the best choice of implant for each individual patient.
机译:对整形外科螺钉的几何形状和材料特性进行了全面研究,不仅考虑了每个因素(螺钉螺距,螺纹数量,圆角角度等)的影响,还考虑了它们与骨密度的相互作用。考虑到螺钉和骨头之间的骨整合水平不同,使用有限元技术分析了由不同螺钉几何形状和骨密度产生的结果。这些数值模型通过实验拉拔试验得到验证,其中120 N的拉拔力导致最后一根螺纹的局部破坏(应力超过0.42 MPa)。然后使用多因素参数分析总结了数值模拟的结果。这表明了骨密度与螺钉螺距之间相互作用的巨大相关性,表明对于不同密度(分别为0.35 g / cm3和0.47 g / cm3),最佳螺钉螺距的变化幅度可以超过25%。多因素分析的结果表明,对于不同的骨整合水平,不同的螺钉几何形状和材料特性以及不同的骨密度,可以估算拔出力。最终目标是为每个患者确定最佳的植入物选择。

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