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Pullout test with three lumbar interbody fusion cages.

机译:使用三个腰椎椎间融合器进行拔出测试。

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STUDY DESIGN: In vitro biomechanical testing was performed on 12 cadaveric human lumbar spines. OBJECTIVE: To determine the initial dislocation resistance, as quantified by the pullout force of three different cage designs. SUMMARY OF BACKGROUND DATA: Interbody cage devices frequently are used as stand-alone cages in the surgical treatment of degenerative conditions in the lumbar spine. In contrast to the wide clinical acceptance of interbody fusion cages, there are only a few biomechanical studies of posterior pullout trials. METHODS: Cylindrical threaded cages (Ray TFC Surgical Dynamics), bullet-shaped cages (Stryker), and newly designed rectangular titanium cages with an endplate anchorage device (Marquardt) were used for posterior interbody implants. For each device, the pullout test was performed in four specimens on both sides (L3-L4). RESULTS: In the pullout test, the Stryker cages required a median pullout force of 130 N (minimum, 100 N; maximum, 220 N), as compared with the higher pullout force of the Marquardt cages (median, 605 N; minimum, 450 N; maximum, 680 N), and the Ray cages (median, 945 N; minimum, 125 N; maximum, 2230 N). CONCLUSIONS: Differences in pullout resistance were noted depending on the cage design. A cage design with threads or a hook device provides superior stability, as compared with ridges. The initial pullout resistance was highest for the Ray cages and lowest for the Stryker cages.
机译:研究设计:在12具尸体人体腰椎上进行了体外生物力学测试。目的:确定初始位错阻力,通过三种不同笼式设计的拉拔力来量化。背景技术概述:椎间融合器装置经常在腰椎退行性疾病的外科手术治疗中用作独立的融合器。与椎间融合器的临床广泛接受相比,后拔除试验的生物力学研究很少。方法:将圆柱形螺纹笼(Ray TFC Surgical Dynamics),子弹形笼(Stryker)和带有端板锚定装置(Marquardt)的新设计的矩形钛笼用于后体间植入物。对于每个设备,在两侧的四个样本(L3-L4)中进行拉出测试。结果:在拉拔试验中,Stryker笼需要的平均拉拔力为130 N(最小100 N;最大为220 N),而Marquardt笼的拉拔力较高(中值为605 N;最小为450) N;最大680 N)和射线笼(中位数945 N;最小125 N;最大2230 N)。结论:根据笼子设计的不同,抗拔力有所不同。与山脊相比,带有螺纹或挂钩装置的笼式设计具有出色的稳定性。雷笼的初始抗拔性最高,而斯特赖克笼的抗拔性最低。

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