首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Uncemented Total Hip Replacement Stem Loosening after Long Term Compressive Stress Application: A Simulated FEA Study of Cortical Bone Remodeling
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Uncemented Total Hip Replacement Stem Loosening after Long Term Compressive Stress Application: A Simulated FEA Study of Cortical Bone Remodeling

机译:长期施加压应力后未胶结的总髋关节置换茎松动:皮质骨重塑的模拟有限元分析

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The purpose of this study is to predict with the use of FEA, the differing predisposition to cortical bone resorption and subsequent distal migration of an un-cemented femoral hip replacement stem subjected to long term biomechanical high compressive stresses, while varying the load angles, the material properties of the stem, and the stem length. A two-dimensional hip model was constructed to estimate the minimum principle stresses (P{sub}3) and migration magnitudes. Bone remodeling at the interface between the bone and the prosthesis was performed by comparison of the local compressive stress to physiological stress values governing bone resorption. With respect to load angles, migrations of the hip prosthesis did not occur with load angles between 63° and 74° load angle in relation to the longitudinal axis of the bony femur, as the compressive stress generated on the cortical bone was under the criteria threshold for bone resorption (-50MPa). In addition, the magnitude of migration (17% decrease) was relatively more sensitive to changes in stem length than those (92% decrease) of changes of material properties. In conclusion, using an FEA model for bone remodeling, based on the high compressive stresses exerted on distal cortical bone, it is possible to estimate migration magnitudes of cementless hip prostheses in the long term. The load angles have been shown to be an important parameter affecting the migration magnitudes and furthermore, it can be demonstrated that the stiffer materials and reduction of stem length can decrease the migration of cementless hip prosthesis in the long term.
机译:这项研究的目的是通过使用FEA来预测承受长期生物力学高压缩应力,同时改变负荷角度的无骨水泥股骨髋关节置换柄对皮质骨吸收的易感性以及随后向远侧迁移的趋势。茎的材料特性以及茎的长度。构建了二维髋关节模型,以估计最小主应力(P {sub} 3)和迁移幅度。通过将局部压应力与控制骨吸收的生理应力值进行比较,可以进行骨与假体之间界面的骨重塑。关于负载角度,相对于骨股骨纵轴,负载角度介于63°和74°之间时,髋关节假体不会发生迁移,因为在皮质骨上产生的压缩应力低于标准阈值用于骨吸收(-50MPa)。此外,迁移量(降低17%)对茎长的变化比材料特性变化相对更敏感(降低92%)。总之,使用FEA模型进行骨重塑,基于施加在远端皮质骨上的高压缩应力,可以长期估算非骨水泥型髋关节假体的迁移幅度。负载角已被证明是影响迁移量的重要参数,此外,可以证明,较硬的材料和茎长度的减少可长期减少非骨水泥型髋关节假体的迁移。

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