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A numerical investigation into the influence of the properties of cobalt chrome cellular structures on the load transfer to the periprosthetic femur following total hip arthroplasty

机译:全髋关节置换术后钴铬细胞结构特性对负载转移至假肢周围股骨影响的数值研究

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摘要

Stress shielding of the periprosthetic femur following total hip arthroplasty is a problem that can promote the premature loosening of femoral stems. In order to reduce the need for revision surgery it is thought that more flexible implant designs need to be considered. In this work, the mechanical properties of laser melted square pore cobalt chrome molybdenum cellular structures have been incorporated into the design of a traditional monoblock femoral stem. The influence of incorporating the properties of cellular structures on the load transfer to the periprosthetic femur was investigated using a three dimensional finite element model. Eleven different stiffness configurations were investigated by using fully porous and functionally graded approaches. This investigation confirms that the periprosthetic stress values depend on the stiffness configuration of the stem. The numerical results showed that stress shielding is reduced in the periprosthetic Gruen zones when the mechanical properties of cobalt chrome molybdenum cellular structures are used. This work identifies that monoblock femoral stems manufactured using a laser melting process, which are designed for reduced stiffness, have the potential to contribute towards reducing stress shielding.
机译:全髋关节置换术后假体周围股骨的应力屏蔽是一个可促进股骨柄过早松弛的问题。为了减少翻修手术的需要,认为需要考虑更灵活的植入物设计。在这项工作中,激光熔化的方孔钴铬钼钼蜂窝结构的机械性能已被纳入传统的整体式股骨柄的设计中。使用三维有限元模型研究了合并细胞结构特性对负载转移到假体周围股骨的影响。通过使用完全多孔和功能分级的方法,研究了11种不同的刚度配置。这项研究证实,假体周围的应力值取决于杆的刚度配置。数值结果表明,当使用钴铬钼蜂窝结构的力学性能时,假体周围Gruen区域的应力屏蔽减小。这项工作表明,采用激光熔化工艺制造的整体式股骨柄具有降低刚度的潜力,有可能有助于减少应力屏蔽。

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