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Lumbar interbody fusion: a parametric investigation of a novel cage design with and without posterior instrumentation.

机译:腰椎椎间融合术:带有和不带有后置器械的新型笼设计的参数研究。

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摘要

A finite element model of the L4-L5 human segment was employed to carry out a parametric biomechanical investigation of lumbar interbody fusion with a novel "sandwich" cage having an inner stiff core and two softer layers in the areas close to the endplates, with and without posterior fixation.Considered cage designs included: (a) cage in a homogeneous material with variable elastic modulus (19-2,000 MPa), (b) "sandwich" cage having an inner core (E=2,000 MPa) and softer layers (E=19 MPa) with variable thickness (1-2.5 mm). The latter cage was also considered in combination with posterior rods made with a material having variable elastic modulus (19-210,000 MPa). All the models were loaded with 500 N compression and moments of 7.5 Nm in flexion, extension, lateral bending and axial rotation.The homogeneous cage stabilized the segment in flexion, lateral bending and axial rotation; in extension there was a destabilization up to 60% and remarkable cage movement (1 mm). The "sandwich" cage limited this phenomenon (cage movement<0.6 mm), effectively stabilized the segment in the other directions and lowered the maximal contact pressure on the endplates, reducing the risk of subsidence. Posterior fixation reduced spinal flexibility and cage movement.The soft layers of the "sandwich" cage had the potential to limit the risk of cage subsidence and to preserve a significant loading of the structure even in combination with flexible posterior instrumentation, which may have a beneficial effect in promoting bony fusion.
机译:用L4-L5人段的有限元模型对腰椎椎间融合的参数生物力学研究进行了研究,该新颖的“三明治”笼具有内部硬核和靠近终板的区域中的两个较软的层,其中考虑的笼子设计包括:(a)均质材料的笼子,具有可变的弹性模量(19-2,000 MPa),(b)“三明治”笼子,其内芯(E = 2,000 MPa)和较软的层(E = 19兆帕),厚度可变(1-2.5毫米)。后者的笼子也被考虑与后杆结合使用,后杆由具有可变弹性模量(19-210,000 MPa)的材料制成。所有模型均承受500 N压缩力,在弯曲,伸展,横向弯曲和轴向旋转时承受7.5 Nm的力矩。延伸到60%的不稳定,笼子运动明显(1毫米)。 “三明治”笼子限制了这种现象(笼子运动<0.6 mm),有效地稳定了其他方向的扇形,并降低了端板上的最大接触压力,从而降低了下陷的风险。后固定降低了脊柱的柔韧性和保持架的移动性。“三明治”保持架的柔软层有可能限制保持器下陷的风险,并且即使与灵活的后置器械结合使用,也可能保留结构的显着载荷,这可能是有益的。促进骨融合的效果。

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