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Influence of morphological variations on cervical spine segmental responses from inertial loading

机译:形态学变异对颈椎脊柱术抗应答的影响

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Objectives: The objective of this study was to investigate the influence of morphological variations in osteoligamentous lower cervical spinal segment responses under postero-anterior inertial loading.Methods: A parametric finite element model of the C5-C6 spinal segment was used to generate models. Variations in the vertebral body and facet depth (anteroposterior), posterior process length, intervertebral disc height, facet articular process height and slope, segment orientation ranging from lordotic to straight, and segment size were parameterized. These variations included male-female differences. A Latin hypercube sampling method was used to select parameter values for model generation. Forces and moments associated with the inertial loading were applied to the generated model segments. The 7 parameters were grouped as local or global depending on the number of spinal components involved in the shape variation. Four output responses representing overall segmental and soft tissue responses were analyzed for each model variation: response angle of the segment, anterior longitudinal ligament stretch, anterior capsular ligament stretch, and facet joint compression in the posterior region. Pearson's correlation coefficient was used to compute the correlations of these output responses with morphological variations.Results: Fifty models were generated from the parameterized model using a Latin hypercube sampling technique. Variation in response angle among the models was 4 degrees and was most influenced by change in the combined dimension of vertebral body and facet depth, followed by size of the segment. The maximum anterior longitudinal ligament stretch varied between 0.1 and 0.3 and was strongly influenced by the change in the segment orientation. The anterior facet joint region sustained tension, whereas the posterior region sustained compression. For the anterior capsular ligament stretch, the most influential global variation was segment orientation, whereas the most influential local variations were the facet height and facet angle parameters. In the case of posterior facet joint compression, segment orientation was again most influential, whereas among the local variations, the facet angle had the most influence.Conclusion: Shape variations in the intervertebral disc influenced segmental rotation and ligament responses; however, the influence of shape variations in the facet joint was confined to capsular ligament responses. Response angle was most influenced by the vertebral body depth variations, explaining greater segmental rotations in female spines. Straighter spine segments sustained greater posterior facet joint compression, which may offer an explanation for the higher incidence of whiplash-associated disorders among females, who exhibit a straighter cervical spine. The anterior longitudinal ligament stretch was also greater in straighter segments. These findings indicate that the morphological features specific to the anatomy of the female cervical spine may predispose it to injury under inertial loading.
机译:目的:本研究的目的是探讨在后前惯性载荷下,骨韧带下颈椎节段反应的形态学变化的影响。方法:使用C5-C6脊柱节段的参数化有限元模型生成模型。将椎体和小关节深度(前后)、后突长度、椎间盘高度、小关节突高度和坡度、前凸到直的节段方向以及节段大小的变化参数化。这些变异包括男女差异。采用拉丁超立方体抽样方法选择模型生成的参数值。与惯性荷载相关的力和力矩应用于生成的模型段。根据参与形状变化的脊柱部件的数量,将这7个参数分为局部或整体。针对每个模型变量,分析了代表整体节段和软组织响应的四个输出响应:节段响应角、前纵韧带拉伸、前囊韧带拉伸和后区小关节压缩。皮尔逊相关系数用于计算这些输出响应与形态变化的相关性。结果:使用拉丁超立方抽样技术,从参数化模型生成了50个模型。模型之间的响应角变化为4度,受椎体和小关节深度组合尺寸变化的影响最大,其次是节段大小。前纵韧带的最大拉伸在0.1到0.3之间变化,并受到节段方向变化的强烈影响。前关节突关节区持续紧张,而后关节区持续压迫。对于前囊韧带拉伸,最有影响的整体变化是节段方向,而最有影响的局部变化是小关节高度和小关节角度参数。在后小关节受压的情况下,节段方向再次是最有影响的,而在局部变异中,小关节角度的影响最大。结论:椎间盘的形状变化影响节段旋转和韧带反应;然而,小关节形状变化的影响仅限于囊膜韧带反应。响应角受椎体深度变化的影响最大,这解释了女性脊柱的节段旋转更大。更直的脊柱节段承受了更大的后关节面压缩,这可能解释了颈椎更直的女性中挥鞭样损伤相关疾病的发病率更高。在较直的节段,前纵韧带的拉伸也较大。这些发现表明,女性颈椎解剖结构特有的形态学特征可能使其在惯性载荷下容易受伤。

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