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Validation of a C2-C7 cervical spine finite element model using specimen-specific flexibility data.

机译:使用标本特有的柔韧性数据验证C2-C7颈椎有限元模型。

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摘要

This study presents a specimen-specific C2-C7 cervical spine finite element model that was developed using multiblock meshing techniques. The model was validated using in-house experimental flexibility data obtained from the cadaveric specimen used for mesh development. The C2-C7 specimen was subjected to pure continuous moments up to +/-1.0 N m in flexion, extension, lateral bending, and axial rotation, and the motions at each level were obtained. Additionally, the specimen was divided into C2-C3, C4-C5, and C6-C7 functional spinal units (FSUs) which were tested in the intact state as well as after sequential removal of the interspinous, ligamentum flavum, and capsular ligaments. The finite element model was initially assigned baseline material properties based on the literature, but was calibrated using the experimental motion data which was obtained in-house, while utlizing the ranges of material property values as reported in the literature. The calibrated model provided good agreement with the nonlinear experimental loading curves, and can be used to further study the response of the cervical spine to various biomechanical investigations.
机译:这项研究提出了使用多块网格技术开发的标本特定的C2-C7颈椎有限元模型。使用从用于网格开发的尸体标本获得的内部实验灵活性数据验证了该模型。对C2-C7试样进行屈曲,伸展,横向弯曲和轴向旋转的纯连续力矩,直至+/- 1.0 N m,并获得各个水平的运动。此外,将标本分为C2-C3,C4-C5和C6-C7功能性脊柱单元(FSU),分别在完整状态以及依次去除棘突间,黄韧带和荚膜韧带后进行测试。最初根据文献为有限元模型分配了基线材料属性,但使用内部获得的实验运动数据进行了校准,同时使用了文献中报道的材料属性值的范围。校正后的模型与非线性实验载荷曲线吻合良好,可用于进一步研究颈椎对各种生物力学研究的反应。

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