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Biomechanical study of a hat type cervical intervertebral fusion cage.

机译:帽子型颈椎椎间融合器的生物力学研究。

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The purpose of this study was to evaluate the biomechanical effect of a hat type cervical intervertebral fusion cage (HCIFC). In this in vitro biomechanical study, 48 goat cervical spines (C2-5) were tested in flexion, extension, axial rotation, and lateral bending with a nondestructive stiffness method using a nonconstrained testing apparatus, and three-dimensional displacement was measured. Autologous iliac bone and cervical spine intervertebral fusion cage were implanted according to manufacturers' information after complete discectomy (C3-4). Eight spines in each of the following groups were tested: intact, autologous iliac bone graft, Harms cage, SynCage C, carbon cage, and HCIFC. The mean apparent stiffness values were calculated from the corresponding load-displacement curves. Additionally, cage volume and volume-related stiffness were determined. The stiffness of the SynCage C was statistically greatest in all directions. After implantation of the HCIFC, flexion stiffness increased compared with that of the intact motion segment. There was no significant difference in stiffness between the HCIFC and carbon cage. The stiffness of the HCIFC was statistically higher than that of the Harms cage in axial rotation and significantly lower in flexion, extension, and lateral bending. Volume-related stiffness of all cages was higher than that of iliac bone graft. The Harms cage was highest in volume-related stiffness in all directions. The HCIFC can provide enough primary stability for cervical intervertebral fusion.
机译:这项研究的目的是评估帽子型颈椎椎间融合器(HCIFC)的生物力学效果。在这项体外生物力学研究中,使用无约束测试设备通过无损刚度方法测试了48只山羊颈椎(C2-5)的屈曲,伸展,轴向旋转和横向弯曲,并测量了三维位移。完全椎间盘切除术(C3-4)后,根据制造商的信息植入自体骨和颈椎椎间融合器。在以下各组中测试了八根棘:完整,自体骨移植物,Harms笼,SynCage C,碳笼和HCIFC。从相应的载荷-位移曲线计算出平均表观刚度值。另外,确定了笼体积和与体积相关的刚度。在所有方向上,SynCage C的刚度在统计学上都最大。植入HCIFC后,与完整运动段相比,弯曲刚度增加。 HCIFC和碳笼之间的刚度没有显着差异。在轴向旋转时,HCIFC的刚度在统计学上高于Harms笼的刚度,而在弯曲,伸展和横向弯曲时则明显较低。所有笼的体积相关刚度均高于of骨移植物。危害笼在各个方向上的体积相关刚度最高。 HCIFC可以为颈椎间融合提供足够的基本稳定性。

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