首页> 美国卫生研究院文献>The Iowa Orthopaedic Journal >Effects of variation of cement thickness on bone and cement stress at the tip of a femoral implant.
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Effects of variation of cement thickness on bone and cement stress at the tip of a femoral implant.

机译:骨水泥厚度变化对股骨植入端骨和骨应力的影响。

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摘要

With the resurgence of the use of bone cement in total hip arthroplasty, a renewed concern in techniques or designs that may reduce cement fixation failure has arisen. Analysis of the stresses at the tip of the prosthesis may suggest strategies to reduce loosening. Using a three-dimensional finite element model this study analyzed stresses in the bone, cement, and prosthesis near the tip of a femoral component as a function of cement thickness. A section of an idealized circular femoral shaft with implant prosthesis and cement was modeled with loading conditions representing the stance phase of gait. Increasing cement thickness is predicted to significantly reduce stress in the cement mantle of a femoral implant. Tensile stress is reduced by fifty percent while shear stress is reduced at least twelve percent. Peak tensile stresses occur on the medial side at the tip of the prosthesis in a transverse direction, indicating likelihood of failure due to debonding. Local shear stress peaks also occur at the tip. Shear stresses in the cement mantle are in the same range as the tensile stresses and must be considered when analyzing the possible modes of failure. However, the mode of failure in shear is complex, and shear strength of the stem-cement interface is unknown at present.
机译:随着在全髋关节置换术中骨水泥的使用的兴起,人们开始重新关注可以减少骨水泥固定失败的技术或设计。分析假体尖端的应力可能会提出减少松弛的策略。本研究使用三维有限元模型,分析了股骨组件尖端附近的骨,水泥和假体中的应力与水泥厚度的关系。用代表假肢步态的负荷条件对理想的圆形股骨干的一部分进行假体植入,并结合骨水泥。预计增加水泥厚度将显着减少股骨植入物的水泥套中的应力。拉应力降低了百分之五十,而剪应力降低了至少百分之十二。峰值拉伸应力出现在假体尖端横向的内侧,表明由于脱粘而导致失效的可能性。尖端也出现局部剪应力峰值。水泥地幔中的剪应力与拉应力在同一范围内,在分析可能的破坏模式时必须加以考虑。但是,剪切破坏的方式是复杂的,目前还不清楚杆-水泥界面的剪切强度。

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