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Finite element analysis of the thickness for staggered dynamic compression bone plate treatment of femoral shaft fracture

机译:交错动力加压接骨板治疗股骨干骨折厚度的有限元分析

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The main purpose of this paper is to investigate the biomechanical effect under different bone thickness, the number of screws and screw position in the case of staggered dynamic compression bone plate treatment of femoral shaft fractures using finite element method. In this study, we utilized SolidWorks 2010 to construct three-dimensional finite element model of bone plates and screws, parameterized finite element analysis techniques by using ANSYS to solve the maximum stress, maximum strain and deformation. The results from the study show that with the increase of bone plate thickness, stress, strain and deformation is nonlinear change. Comparison in terms of the number of screws, maximum stress and strain occurred in 10 of the screw system, the maximum deformation occurs in 4 Screw; screw position in terms of the maximum stress and strain generated in the screw position of 2-5-6-9 system, maximum deformation occurs in the position of the screw 3-5-6-8 system, but the amount of difference deformation anywhere in the system of only 1.245%, the difference is very small. Expected results of this study by the research can provide orthopedic surgeons to understand the biomechanical properties of bone plate bone screw system, and choose to use as a bone plate reference clinically to avoid the generation of fixation failure.
机译:本文的主要目的是利用有限元方法研究在交错的动态压缩骨板治疗股骨干骨折的情况下不同骨厚度,螺钉数量和螺钉位置的生物力学效应。在这项研究中,我们利用SolidWorks 2010构建了骨板和螺钉的三维有限元模型,并通过使用ANSYS解决了最大应力,最大应变和变形的参数化有限元分析技术。研究结果表明,随着骨板厚度的增加,应力,应变和变形呈非线性变化。在螺钉数量方面进行比较,最大的应力和应变发生在10个螺钉系统中,最大变形发生在4个螺钉中;就2-5-6-9系统的螺钉位置产生的最大应力和应变而言,螺钉位置最大,在3-5-6-8系统的螺钉位置发生最大变形,但任何地方的变形量差在只有1.245%的系统中,差异很小。这项研究的预期结果可以为整形外科医生了解骨板骨螺钉系统的生物力学特性,并选择在临床上用作骨板参考,以避免产生固定失败。

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