首页> 外文期刊>Spine >Effect of supplemental translaminar facet screw fixation on the stability of stand-alone anterior lumbar interbody fusion cages under physiologic compressive preloads.
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Effect of supplemental translaminar facet screw fixation on the stability of stand-alone anterior lumbar interbody fusion cages under physiologic compressive preloads.

机译:经生理性预压下经椎板小平面螺钉固定对独立前腰椎椎间融合器稳定性的影响。

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STUDY DESIGN: A biomechanical study of lumbar threaded interbody cage construct under varying compressive preloads of similar magnitudes to those experienced in vivo during daily activities. OBJECTIVES: To test the hypothesis that supplemental translaminar facet screws would enhance the stability (ability to reduce segmental angular motion) of threaded interbody cages in flexion-extension during activities in which the spine is subjected to low compressive preloads, and therefore the stand-alone interbody cage construct is least stable. SUMMARY OF BACKGROUND DATA: Controversy exists over whether threaded anteriorly placed interbody cages can be routinely used as "stand-alone" devices or whether they require supplemental posterior stabilization to achieve successful fusion. Biomechanical studies suggest that under conditions of low preloads, the motion segment treated with stand-alone cages might be less stable, particularly in extension. METHODS.: Eight human lumbar spine specimens (from L1 to sacrum) were tested intact, after insertion of 2 threaded cylindrical cages (BAK) at L5-S1 and after supplemental translaminar facet screw fixation. They were subjected to flexion and extension moments under progressively increasing magnitude of externally applied compressive follower preload from 0 to 1200 N. The range of angular motion in flexion-extension at L5-S1 was analyzed to assess the effect of translaminar facet screws on the stability of the cage construct for different compressive preloads. RESULTS: In flexion, over 0 to 400 N preload, the supplemental translaminar facet screw fixation reduced the L5-S1 angular motion relative to intact by 71% to 74% as compared to 40% to 44% for the cages alone. This difference was statistically significant (P < 0.05). In extension at 0 N preload, the cages allowed more angular motion than the intact segment, whereas with translaminar facet screw fixation, the motion was reduced to the level of the intact segment. At 400 N preload, supplemental TLFS fixation significantly increased the stability of the cages, reducing the extension angular motion by 60% of intact (P = 0.04). Supplemental translaminar facet screw fixation did not significantly increase the stability provided by the cages in flexion or extension at the 1200 N preload magnitude. CONCLUSIONS: In vivo during activities of daily living, interbody cage constructs are subject to varying compressive preloads due to external loads generated by paraspinal musculature, and our results suggest that the stability created by the cage (reduction in segmental angular motion) is not constant. The cage construct is likely to be least stable in extension during activities that impart low compressive preloads to the lumbar spine. Supplemental translaminar facet screw fixation will enhance stability of the motion segment treated with threaded cages, particularly during conditions of low compressive preloads, the very condition in which the cage alone is least effective in providing stability.
机译:研究设计:腰椎椎间椎间融合器构建体在不同压缩预紧力下的生物力学研究,其大小与日常活动中体内经历的相似。目的:为了验证以下假设:在脊柱承受较低的预压载荷的情况下,补充的经椎板小平面螺钉将增强椎间带螺纹的椎间融合器在屈伸过程中的稳定性(降低节段性角运动的能力),因此可以独立使用椎间融合器构造最不稳定。背景技术概述:螺纹固定的椎间融合器能否常规用作“独立”装置还是它们是否需要补充后方稳定装置才能成功融合存在争议。生物力学研究表明,在低预紧力的条件下,用独立笼进行处理的运动段可能不太稳定,尤其是在伸展时。方法:在L5-S1处插入2个带螺纹的圆柱笼(BAK)以及经椎板小平面小螺钉补充固定后,测试了8个人类腰椎标本(从L1到骨)。在外部施加的压缩从动件预紧力从0到1200 N逐渐增加的幅度下,它们承受屈曲和伸展力矩。分析了L5-S1时屈伸的角运动范围,以评估椎板小平面螺钉对稳定性的影响不同压缩预紧力的保持架构造的示意图。结果:在屈曲状态下,在0至400 N的预紧力下,补充的椎板小平面螺钉固定使相对于完整的L5-S1角向运动减少了71%至74%,而单独的保持架则为40%至44%。这种差异具有统计学意义(P <0.05)。在0 N预紧力下延伸时,保持架比完整节段允许更多的角度运动,而在使用椎板小平面螺钉固定时,运动减少到完整节段的水平。在预紧力为400 N时,补充的TLFS固定可显着提高笼的稳定性,从而使延伸角运动减少60%的完整性(P = 0.04)。经补充的椎板小平面螺钉固定并没有显着增加在1200 N预紧力下保持架在屈曲或伸展时提供的稳定性。结论:在体内的日常生活活动中,由于椎旁肌群产生的外部载荷,椎间融合器的构造体承受着不同的压缩预紧力,我们的结果表明,笼子产生的稳定性(节段性角运动的减小)不是恒定的。在对腰椎施加低压缩预紧力的活动过程中,笼式结构的伸展可能最不稳定。经补充的椎板小平面螺钉固定将增强用螺纹保持架处理的运动节段的稳定性,特别是在低压缩预紧力的情况下,仅保持架最不能有效地提供稳定性。

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