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Pullout analysis of a lumbar plate with varying screw orientations: Experimental and computational analyses

机译:腰椎板螺钉方向变化的拉拔分析:实验和计算分析

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STUDY DESIGN. Experimental and finite element analysis of anterior lumbar interbody fixation (ALIF) plate pullout. OBJECTIVE. The objective of this study was to determine the effect of screw angle and orientation on ALIF plate pullout strength. SUMMARY OF BACKGROUND DATA. It has been thought that angling the screws in an ALIF plate leads to better fixation strength; however, a few studies are published on this question, which produced conflicting results. METHODS. Using custom guides, screws were configured in 9 different orientations to affix ALIF plates to polyurethane foam blocks. Pullout tests were performed at a rate of 1 mm/min. In addition, finite element analyses were performed on a 2-dimensional screw-block model to gain insight into the internal stress during pullout. RESULTS. The pullout load was the greatest, with screws positioned 12° outward sagittaly and 6° inward coronally (936 ± 72 N). This orientation was statistically greater than the orientation with the lowest pullout load (812 ± 45 N, P < 0.05); however, no group was statistically different than placing the screws straight in (868 ± 86 N, P > 0.05). Finite elements analysis showed some gain in pullout strength at 12° followed by some loss at greater angles. As the screw insertion angle increased, stress levels elevated within the block even in the regions away from the screw. CONCLUSION. Significant difference was found between certain screw-angle configurations; however, when compared with simply placing the screws straight in, the difference was never more than 8%. This implies that there is greater freedom in the angle and placement of screws than previously thought. Our results show that there is little change in fixation strength when placing the screw in a different direction.
机译:学习规划。腰椎前路椎体间固定(ALIF)钢板拔出的实验和有限元分析。目的。这项研究的目的是确定螺钉角度和方向对ALIF板拉出强度的影响。背景数据摘要。人们认为,将螺丝钉固定在ALIF板上会导致更好的固定强度。然而,关于这个问题的一些研究发表了,结果却相矛盾。方法。使用定制的导向器,将螺钉配置为9个不同的方向,以将ALIF板固定到聚氨酯泡沫块上。拔出测试以1 mm / min的速度执行。此外,对二维螺钉块模型进行了有限元分析,以了解拉拔过程中的内部应力。结果。拔出载荷最大,螺钉的径向矢状向外定位为12°,冠状向内定位为6°(936±72 N)。从统计学上讲,该方向大于拔出载荷最低的方向(812±45 N,P <0.05);但是,在统计学上,没有任何一组比将螺钉笔直放入(868±86 N,P> 0.05)有所不同。有限元分析显示,拉拔强度在12°时有所增加,随后在较大角度时有所损失。随着螺钉插入角度的增加,即使在远离螺钉的区域中,块体内的应力水平也会升高。结论。在某些螺钉角度配置之间发现了显着差异。但是,与简单地直接拧入螺丝相比,相差不超过8%。这意味着螺钉的角度和位置的自由度比以前认为的要大。我们的结果表明,将螺钉沿不同方向放置时,固定强度几乎没有变化。

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