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Study on Cervical Spine Stresses Based on Finite Element Model

机译:基于有限元模型的颈椎应力研究

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Objective: To establish three dimensional finite element model of the whole cervical spine and investigate biomechanical characteristic of the human cervical spine for application of clinical diagnosis and therapy. Method: A healthy adult female was subjected, three dimensional finite element model of the whole cervical spine was established using the method of 3D interpolation with CT. Result: The model included seven vertebrae, five discs, postical structure and seven ligaments. The volume of the whole model is 74 878.34mm3, the surface area is 32 616.04mm2, which consisting of 578 007elements, 123 358nodes, comparing the simulation data with the literature, the validity of the model was verified. Conclusion: The three-dimensional finite element model simulates the structure and property of cervical spine, whose structure is whole, its elements is fine, the model is very accurate and credible. The equivalent (Von Mises) stress of centum, facet joints and intervertebral disc in flexion is higher than in extension, the result of the biomechanical study was better correlated with the available experimental data. This indicates that the model can be used to analyze the biomechanics characteristic of the human cervical spine f in different condition.
机译:目的:建立全颈椎三维有限元模型,研究人颈椎的生物力学特征,应用临床诊断和治疗。方法:使用与CT的3D插值方法建立了一个健康的成年女性,建立了整个颈椎的三维有限元模型。结果:该模型包括七个椎骨,五个圆盘,何种韧带。整个型号的体积为74 878.34mm3,表面积为32 616.04mm2,由578 0071719191919,123 358节组成,将模拟数据与文献进行比较,验证了模型的有效性。结论:三维有限元模型模拟颈椎的结构和性质,其结构整体,其元素很好,模型非常准确和可信。 Centum,Facet关节和椎间盘在屈曲中的等效(vonmes)应力高于延伸,生物力学研究的结果与可用的实验数据更好地相关。这表明该模型可用于分析不同条件下人颈椎F的生物力学特征。

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