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Moment Prediction for Evaluating Stability of the Upper Cervical Spine Fixed with Wires using Finite Element Analysis

机译:使用有限元分析评估用线固定的上颈椎稳定性的矩预测

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This study was aimed at predicting moments with respect to diameters of wires for evaluating stability of the upper cervical spine fixed with wires based on the fin ite element analysis. In case of the severe atlanto-axial instability, several surgical methods have been tried and the posterior fixation using wires has been widely used because of the sufficient stability and high rate of bony adhesion. The diameters of wires applied in this study were 0.7 mm, 0.9 mm and 1.25 mm. 1.5 Nm is the moment for the normal physiological range of motion of the upper cervical spine in cadaver models. However, if this moment is applied to the occiput, an excessive load occurs at the occipito-atlantal joint and clinical problems can break out realistically. Thus, it is necessary to predict moments for evaluating stability with respect to diameters of wires. The results showed that 0.7 mm wire allowed the biggest moment while 1.25 mm wire allowed the smallest moment. In addition, the upper cervical spine fused with wires was stabilized effectively as the load increased.
机译:该研究旨在预测相对于导线直径的矩,用于基于鳍ITE元素分析评估用线固定的上颈椎的稳定性。在严重的寰枢轴轴向不稳定性的情况下,已经尝试了几种外科手术方法,并且由于足够的稳定性和高粘附速率而被广泛使用了使用线的后固定。本研究中施加的电线直径为0.7mm,0.9mm和1.25mm。 1.5 nm是尸体模型上颈椎正常生理范围的时刻。然而,如果这一刻适用于枕骨,则在枕型 - 寰舞的关节和临床问题上发生过度的负荷可以现实地分解。因此,有必要预测用于评估相对于电线直径的稳定性的瞬间。结果表明,0.7毫米的电线允许最大的时刻,而1.25毫米线允许最小的时刻。另外,随着负荷增加,有效地稳定与电线熔化的上颈椎稳定。

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