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Development and validation of a 10-year-old child ligamentous cervical spine finite element model

机译:一种10岁儿童韧皮颈椎有限元模型的发展与验证

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Although a number of finite element (FE) adult cervical spine models have been developed to understand the injury mechanisms of the neck in automotive related crash scenarios, there have been fewer efforts to develop a child neck model. In this study, a 10-year-old ligamentous cervical spine FE model was developed for application in the improvement of pediatric safety related to motor vehicle crashes. The model geometry was obtained from medical scans and meshed using a multi-block approach. Appropriate properties based on review of literature in conjunction with scaling were assigned to different parts of the model. Child tensile force-deformation data in three segments, Occipital-C2 (C0-C2), C4-C5 and C6-C7, were used to validate the cervical spine model and predict failure forces and displacements. Design of computer experiments was performed to determine failure properties for intervertebral discs and ligaments needed to set up the FE model. The model-predicted ultimate displacements and forces were within the experimental range. The cervical spine FE model was validated in flexion and extension against the child experimental data in three segments, C0-C2, C4-C5 and C6-C7. Other model predictions were found to be consistent with the experimental responses scaled from adult data. The whole cervical spine model was also validated in tension, flexion and extension against the child experimental data. This study provided methods for developing a child ligamentous cervical spine FE model and to predict soft tissue failures in tension.
机译:虽然已经开发了许多有限元(Fe)成人颈椎模型来了解汽车相关碰撞情景中颈部的伤害机制,但努力开发儿童颈部模型。在这项研究中,开发了一种10岁的韧带颈椎FE模型,以改善与机动车崩溃有关的儿科安全性。从医疗扫描获得模型几何,并使用多块方法网格啮合。基于缩放的文献审查的适当属性被分配给模型的不同部分。儿童拉伸力 - 变形数据在三个区段中,枕骨-C2(CO-C2),C4-C5和C6-C7用于验证颈椎模型并预测失效力和位移。进行计算机实验的设计以确定所需的椎间盘和韧带的失效性能,以建立FE模型。模型预测的最终位移和力量在实验范围内。颈椎FE模型在三个区段,CO-C2,C4-C5和C6-C7中的儿童实验数据依次验证屈曲和延伸。发现其他模型预测与成年数据缩小的实验响应一致。整个颈椎模型也被张力,屈曲和延伸对儿童实验数据验证。该研究提供了用于开发儿童韧带颈椎FE模型的方法,并预测张力下的软组织失效。

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