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首页> 外文期刊>Journal of mechanics in medicine and biology >THE INFLUENCE OF TIBIAL PROSTHESIS DESIGN FEATURES ON STRESSES RELATED TO ASEPTIC LOOSENING AND STRESS SHIELDING
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THE INFLUENCE OF TIBIAL PROSTHESIS DESIGN FEATURES ON STRESSES RELATED TO ASEPTIC LOOSENING AND STRESS SHIELDING

机译:胫骨假体设计特征对应力松动和应力掩蔽相关应力的影响

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摘要

Aseptic loosening caused by mechanical factors is a recognized failure mode for tibial components of knee prostheses. This parametric study investigated the effects of prosthesis fixation design changes, which included the presence, length and diameter of a central stem, the use of fixation pegs beneath the tray, all-polyethylene versus metal-backed tray, prosthesis material stiffness, and cement mantle thickness. The cancellous bone compressive stresses and bone-cement interfacial shear stresses, plus the reduction of strain energy density in the epiphyseal cancellous bone, an indication of the likelihood of component loosening, and bone resorption secondary to stress shielding, were examined. Design features such as longer stems reduced bone and bone-cement interfacial stresses thus the risk of loosening is potentially minimized, but at the expense of an increased tendency for bone resorption. The conflicting trend suggested that bone quality and fixation stability have to be considered mutually for the optimization of prosthesis designs. By comparing the bone stresses and bone-cement shear stresses to reported fatigue strength, it was noted that fatigue of both the cancellous bone and bone-cement interface could be the driving factor for long-term aseptic loosening for metal-backed tibial trays.
机译:由机械因素引起的无菌性松动是公认的膝关节假体胫骨组件衰竭模式。这项参数研究调查了假体固定设计变更的影响,包括中央茎的存在,长度和直径,托盘下方固定钉的使用,全聚乙烯与金属支持的托盘,假体材料的刚度以及水泥罩厚度。检查了松质骨的压缩应力和骨水泥界面剪切应力,以及骨s松质骨中应变能密度的降低,指示部件松动的可能性以及应力屏蔽后的骨吸收。设计特征(例如更长的茎杆)减少了骨骼和骨水泥的界面应力,因此潜在地将松动的风险降到了最低,但是却以增加骨骼吸收的趋势为代价。这种相互矛盾的趋势表明,为了优化假体设计,必须相互考虑骨骼质量和固定稳定性。通过将骨应力和骨水泥剪切应力与报告的疲劳强度进行比较,可以注意到,松散骨和骨水泥界面的疲劳可能是金属支撑胫骨托长期无菌松动的驱动因素。

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