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A 3D finite element model of upper cervical vertebrae based on CT images

机译:基于CT图像的上颈椎3D有限元模型

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With information on geometrical topology and material properties, CT images have been widely used for 3D reconstruction and finite element modeling of human body parts. Based on the results of bone segmentation and ligament drawing from CT images, this study was able to reconstruct a 3D model of upper cervical vertebrae (C0-C3) and build a finite element model of C0-C3 using ANSYS software. For conducting further finite element analysis of stress distribution and the craniocervical kinematics simulation, the finite element model of C0-C3 was assigned with proper material properties, boundary conditions and loads. The results of rotation simulation show that the maximum stresses were located in the posterior arch of C1, odontoid process of C2 and spinous process of C2 and C3 which are consistent with the clinical experience.
机译:借助有关几何拓扑和材料特性的信息,CT图像已被广泛用于人体部位的3D重建和有限元建模。基于CT图像的骨分​​割和韧带绘制结果,本研究能够使用ANSYS软件重建上颈椎(C0-C3)的3D模型并建立C0-C3的有限元模型。为了进行应力分布的进一步有限元分析和颅颈运动学仿真,为C0-C3的有限元模型分配了适当的材料属性,边界条件和载荷。旋转模拟结果表明,最大应力位于C1的后牙弓,C2的齿状突,C2和C3的棘突,与临床经验相吻合。

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