首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Primary stability of tibial components in TKA: in vitro comparison of two cementing techniques.
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Primary stability of tibial components in TKA: in vitro comparison of two cementing techniques.

机译:胫骨组件在TKA中的主要稳定性:两种固井技术的体外比较。

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摘要

In spite of improvements in cementing technique, migration of tibial component remains a problem in total knee arthroplasty. This study compares the primary stability of tibial components using two different cementing techniques with roentgen stereophotogrammetric analysis (RSA) in vitro. A total of 20 tibia specimens were matched into two groups, 10 specimens per group. Cementing technique was randomized to each group. In the first group only the base and in the second group the base and stem were cemented. The implants and the tibial metaphysis were marked with markers for the RSA analysis. All specimens were tested with an axial load of 2,000 N for 1,000 and 10,000 cycles and RSA analysis was performed. Endpoints for radiosterometric analysis were maximum total point motion, maximum subsidence, lift off, rotation and translation along the x-, y-, and z-axes. After 1,000 and 10,000 cycles, no significant differences could be found, but two tibial components of the surface cementing group showed a migration of more than 2 mm defined as failure compared to six failed tibial components in the full cementing group (P = 0.068). This higher number of failed arthroplasties in the fully cemented prosthesis group demonstrates a disadvantageous load distribution in the tibia apophysis which can cause an early component loosening.
机译:尽管胶合技术有所改进,胫骨组件的迁移仍然是全膝关节置换术中的一个问题。这项研究使用伦琴立体摄影测量分析(RSA)在体外比较了两种不同的胶合技术对胫骨组件的主要稳定性。将总共​​20个胫骨标本分为两组,每组10个标本。固井技术被随机分配到每组。在第一组中,仅基部固结,而在第二组中,基部和基部固结。植入物和胫骨干physi端均标有用于RSA分析的标记。所有样品在2,000 N的轴向载荷下进行了1,000和10,000次循环测试,并进行了RSA分析。放射立体分析的终点是最大总点运动,最大沉降,抬升,沿x轴,y轴和z轴的旋转和平移。在1,000和10,000次循环后,没有发现明显差异,但是与整个胶结组中的六个失败的胫骨组件相比,表面胶合组的两个胫骨组件显示超过2 mm的移动被定义为失败(P = 0.068)。在完全粘合的假体组中,这种失败的人工关节置换术数量较高,这表明胫骨骨突中的负荷分布不理想,这可能导致早期部件松动。

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