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Finite element analysis and cadaveric cinematic analysis of fixation options for anteriorly implanted trabecular metal interbody cages

机译:前植入小梁金属椎间融合器固定选项的有限元分析和尸体影像分析

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PurposeTo assess, with finite element analysis and an in vitro biomechanical study in cadaver, whether the implementation of an anterior interbody cage made of hedrocel with nitinol shape memory staples in compression increases the stiffness of the stand-alone interbody cage and to compare these constructs’ stiffness to other constructs common in clinical practice.MethodsA biomechanical study with a finite element analysis and cadaveric testing assessed the stiffness of different fixation modes for the L4–L5 functional spinal unit: intact spine, destabilized spine with discectomy, posterior pedicle-screw fixation, anterior stand-alone interbody cage, anterior interbody cage with bilateral pedicle screws and anterior interbody cage with two shape memory staples in compression. These modalities of vertebral fixation were compared in four loading modes (flexion, extension, lateral bending, and axial rotation).ResultsThe L4–L5 spinal unit with an anterior interbody cage and two staples was stiffer than the stand-alone cage. The construct stiffness was similar to that of a model of posterior pedicular stabilization. The stiffness was lower than that of the anterior cage plus bilateral pedicle-screw fixation.ConclusionThe use of an anterior interbody implant with shape memory staples in compression may be an alternative to isolated posterior fixation and to anterior isolated implants, with increased stiffness...
机译:目的通过尸体中的有限元分析和体外生物力学研究来评估,在加压下实施由hedrocel和镍钛合金形状记忆钉组成的前体椎间融合器是否能增加独立椎间融合器的刚度,并比较这些结构方法采用有限元分析和尸体测试的生物力学研究评估了L4–L5功能性脊柱单元的不同固定方式的刚度:完整的脊柱,不稳定的脊柱椎间盘切除术,后椎弓根螺钉固定,前部独立式椎间融合器,带双侧椎弓根螺钉的前部椎间融合器和带有两个受压的形状记忆钉的前部椎间融合器。在四种加载模式(屈曲,伸展,侧向弯曲和轴向旋转)下比较了这些椎骨固定方式。结果L4–L5脊柱单元具有一个前椎间椎间融合器和两个吻合钉,比独立的椎体更坚硬。构造刚度类似于后椎弓根稳定模型的刚度。刚度低于前笼加双侧椎弓根螺钉固定的结论。结论使用前体间植入物与形状记忆钉一起加压可能是孤立的后固定和前孤立的植入物的替代方法,其刚性增加。

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