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首页> 外文期刊>The Journal of arthroplasty >Role of surgical position on interface stress and initial bone remodeling stimulus around hip resurfacing arthroplasty.
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Role of surgical position on interface stress and initial bone remodeling stimulus around hip resurfacing arthroplasty.

机译:手术位置对髋关节表面置换术周围的界面应力和初始骨重塑刺激的作用。

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摘要

Valgus alignment of femoral resurfacing components has been advocated to reduce proximal femur loading and thus minimize the risk for femoral neck fractures. However, such reduction in loading may exacerbate undesirable stress shielding. This study examined the effect of extreme implant orientations (+/-15 degrees ) and stem canal overreaming on initial bone remodeling stimulus using finite element models. The changes in implant-cement interface stresses due to implant alignment were also evaluated. The valgus model showed increased initial bone resorption stimulus, which extended distally and peripherally around the femoral neck. The peak implant-cement interface shear stress for the varus model was 10.9 MPa, exceeding the interface shear strength. Overreaming of the stem canal eliminated distal tip loading, but proximal stress shielding was still unavoidable. These data show bone loading and interface fixation trends emanating from valgus and varus implant positions that will be of interest to practicing physicians.
机译:提倡股骨表面置换组件外翻对准可减少股骨近端负荷,从而最大程度地减少股骨颈骨折的风险。然而,这种载荷的减少可能加剧不希望的应力屏蔽。这项研究使用有限元模型研究了极端植入物方向(+/- 15度)和干管过度扩张对初始骨重塑刺激的影响。还评估了由于植入物对准而引起的植入物-水泥界面应力的变化。外翻模型显示出增加的初始骨吸收刺激,该刺激在股骨颈周围向远端和外周延伸。内翻模型的最大植入物-水泥界面剪切应力为10.9 MPa,超过了界面剪切强度。茎管过度扩张消除了远端尖端负荷,但近端应力屏蔽仍然不可避免。这些数据显示了外科医生和内翻种植体位置产生的骨负荷和界面固定趋势,这将是执业医师所感兴趣的。

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