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Biomechanical evaluation of pedicle screw loosening mechanism using synthetic bone surrogate of various densities

机译:利用不同密度的人工骨替代物进行椎弓根螺钉松动机理的生物力学评估

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Pedicle screw fixation is a well-established procedure for various spinal disorders. However, pedicle screws failures are still reported. Therefore, there is a need for a greater understanding of the pedicle screw failure mechanism. This experimental study investigates the biomechanical stability of pedicle screws using a synthetic bone surrogate with a special focus on the screw loosening mechanism. Pedicle screws have been inserted in thirty six polyurethane foam blocks of three different densities. In half of the specimens from each density group, pedicle screws were submitted to cyclic bending (toggling) before pullout. The rest of specimens were solely loaded in axial pullout. The peak pullout force and stiffness were determined from load-displacement curve of each specimen. Statistical analyses were performed to investigate on the effect of toggling and bone surrogate density on the pedicle screw's pullout force. The results suggest that the pullout force and stiffness were significantly affected by toggling and density. Higher pullout forces resulted from higher grades of density. The proposed method allowed investigating the pedicle screw loosening mechanism. However, conducing further experimental tests on animal or cadaveric vertebrae are needed to confirm these findings.
机译:椎弓根螺钉固定是针对各种脊柱疾病的公认方法。但是,仍然有椎弓根螺钉故障的报道。因此,需要对椎弓根螺钉失效机理有更多的了解。这项实验研究使用合成的骨替代物研究椎弓根螺钉的生物力学稳定性,并特别关注螺钉的松动机理。椎弓根螺钉已插入三种密度不同的36个聚氨酯泡沫块中。在每个密度组的一半样本中,在拔出之前,对椎弓根螺钉进行周期性弯曲(切换)。其余样品仅轴向拉样。由每个样品的载荷-位移曲线确定峰值拉拔力和刚度。进行统计分析以研究切换和骨替代密度对椎弓根螺钉拉出力的影响。结果表明,拔出力和刚度受到切换和密度的显着影响。更高的拔出力归因于更高的密度等级。所提出的方法允许研究椎弓根螺钉的松动机理。但是,需要对动物或尸体椎骨进行进一步的实验测试以证实这些发现。

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