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Biomechanical Comparison of Different Pedicle Screw Fixations for Thoracolumbar Burst Fractures using Finite Element Method

机译:使用有限元法的胸腰椎突发骨折不同椎弓根螺钉固定的生物力学比较

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摘要

This study was designed to compare the biomechanical effects of three posterior fixations for thoracolumbar burst fractures using the finite element (FE) method. Five T11-L1 FE models, including the intact, the fractured at T12, the monosegment fixated at the level of the fracture, the short-segment fixated with four pedicle screws and the short-segment fixated with five pedicle screws, were created. And four loading conditions (flexion, extension, lateral bending and torsion) were imposed on these models and deformations in these models under different loading conditions were calculated by finite element method. The biomechanical effects of the three different pedicle screw fixations for thoracolumbar burst fractures were compared and analyzed. The results showed that the displacement level in monosegment fixation model was close to that in the intact one. The extension motion was more limited in short-segment fixation models than that in monosegment fixation model. Under the lateral bending condition, the level of the displacements in these models were similar and the peak rotation angles in the three fixation models were close to that in the intact one. The displacements in fractured T12 were increased in monosegment fixation model under all loading conditions. These indicated that the monosegment fixation couldn't provide desirable stability for the fractured T11-L1 and the short-segment fixation with five pedicle screws was the best selection because of ideal stability and movability.
机译:本研究旨在使用有限元(Fe)方法比较三个后固定的三个后固定的生物力学效应。包括完整的五个T11-L1 Fe型号,在T12处裂缝,在裂缝水平上固定的单核,用四个椎弓根螺钉固定的短段和用五个椎弓根螺钉固定的短段。在这些模型上施加了四种装载条件(屈曲,延伸,横向弯曲和扭转),并通过有限元方法计算在不同负载条件下这些模型中的变形。比较和分析了三种不同椎弓根螺钉固定的生物力学效应。结果表明,单核固定模型中的位移水平靠近完整的定位。扩展运动在短段固定模型中更有限,而不是单核固定模型。在横向弯曲条件下,这些模型中的位移的水平类似,并且三个固定模型中的峰值旋转角度在完整的内部接近该峰值旋转角度。在所有装载条件下,裂缝T12的位移在单核固定模型中增加。这些表明,由于理想的稳定性和可移动性,单秒固定不能为断裂T11-L1提供所需的骨折T11-L1的稳定性,并且具有五个椎弓根螺钉是最佳选择。

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