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Tibial Inlay Press-fit Fixation Versus Interference Screw in Posterior Cruciate Ligament Reconstruction

机译:后交叉韧带重建中的胫骨嵌体压入固定与干涉螺钉

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Reconstruction of the posterior cruciate ligament (PCL) by a tibial press-fit fixation of the patellar tendon with an accessory bone plug is a promising approach because no foreign materials are required. Until today, there is no data about the biomechanical properties of such press-fit fixations. The aim of this study was to compare the biomechanical qualities of a bone plug tibial inlay technique with the commonly applied interference screw of patellar tendon PCL grafts. Twenty patellar tendons including a bone block were harvested from ten human cadavers. The grafts were implanted into twenty legs of adult German country pigs. In group P, the grafts were attached in a press-fit technique with accessory bone plug. In group S, the grafts were fixed with an interference screw. Each group consisted of 10 specimens. The constructs were biomechanically analyzed in cyclic loading between 60 and 250 N for 500 cycles recording elongation. Finally, ultimate failure load and failure mode were analyzed. Ultimate failure load was 598.6±36.3 N in group P and 653.7±39.8 N in group S (not significant, P>0.05). Elongation during cyclic loading between the 1st and the 20th cycle was 3.4±0.9 mm for group P and 3.1±1 mm for group S. Between the 20th and the 500th cycle, elongation was 4.2±2.3 mm in group P and 2.5±0.9 mm in group S (not significant, P>0.05). This is the first study investigating the biomechanical properties of tibial press-fit fixation of the patellar tendon with accessory bone plug in posterior cruciate ligament reconstruction. The implant-free tibial inlay technique shows equal biomechanical characteristics compared to an interference screw fixation. Further in vivo studies are desirable to compare the biological behavior and clinical relevance of this fixation device.Key words: posterior cruciate ligament reconstruction, tibial press-fit fixation, interference screw, biomechanical properties
机译:通过胫骨肌腱的胫骨加压配合胫骨肌腱的后路韧带重建(PCL)是一种很有前途的方法,因为不需要异物。直到今天,还没有关于这种压配合固定件的生物力学特性的数据。这项研究的目的是比较plug骨胫骨镶嵌技术与pa腱PCL移植物的常用干涉螺钉的生物力学质量。从十个人类尸体中收获了二十个包括骨块的including腱。将移植物植入二十只成年德国乡村猪的腿中。在P组中,将移植物通过压入技术与附件骨栓连接。在S组中,用干涉螺钉固定移植物。每组由10个样本组成。在60至250N之间的循环载荷下对构建体进行了生物力学分析,记录了延伸的500个循环。最后,分析了极限破坏载荷和破坏模式。 P组的极限破坏负荷为598.6±36.3 N,S组的极限破坏负荷为653.7±39.8 N(不显着,P> 0.05)。 P组在第一个周期和第20个周期之间的循环载荷伸长率为3.4±0.9 mm,S组为3.1±1 mm。在20个周期和第500个周期之间,P组的伸长率为4.2±2.3 mm,P组为2.5±0.9 mm S组(无统计学意义,P> 0.05)。这是第一项研究胫骨肌腱的胫骨加压配合固定及后交叉韧带重建的生物力学特性的研究。与干涉螺钉固定相比,无植入物胫骨镶嵌技术显示出相同的生物力学特性。需要进一步的体内研究来比较这种固定装置的生物学行为和临床相关性。关键词:后十字韧带重建,胫骨压入固定,干涉螺钉,生物力学特性

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