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首页> 外文期刊>The Journal of arthroplasty >The effect of stem modularity and mode of fixation on tibial component stability in revision total knee arthroplasty.
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The effect of stem modularity and mode of fixation on tibial component stability in revision total knee arthroplasty.

机译:茎模块和固定方式对翻修全膝关节置换术中胫骨组件稳定性的影响。

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摘要

The effect of stem length, diameter, and mode of fixation on the motion and stress transfer of a cemented tibial tray were evaluated for in 12 cadaver knees. There was a significant decrease in motion of the tibial tray with increasing press-fit stem length (75-150 mm) and increasing stem diameter (10-14 mm). Cemented tibial stems showed significantly less tray motion than uncemented stems. The short cemented stems produced tray stability equivalent to long press-fit stems. Although there was a trend for increased proximal tibial stress shielding with the use of cement and longer, wider stems, the trend was not statistically significant. Modular, press-fit stems can achieve tray stability similar to a smaller cemented stem and can avoid the potential problems with cement.
机译:在12个尸体膝盖中评估了茎长度,直径和固定方式对骨水泥化胫骨托运动和应力传递的影响。胫骨托的运动随着压入式杆长(75-150 mm)和杆直径(10-14 mm)的增加而显着降低。骨水泥型胫骨茎比非骨水泥型茎表现出明显更少的托盘运动。短水泥杆产生的托盘稳定性相当于长压配合杆。尽管存在使用水泥和更长,更宽的茎增加胫骨近端应力屏蔽的趋势,但该趋势在统计学上并不显着。模块化的压配合阀杆可以实现与较小的水泥杆相似的托盘稳定性,并且可以避免水泥的潜在问题。

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