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在脊柱创伤模型中流体-结构相互作用的重要性。

The importance of fluid-structure interaction in spinal trauma models.

机构信息

School of Mechanical Engineering, University of Leeds, Leeds, United Kingdom.

出版信息

J Neurotrauma. 2011 Jan;28(1):113-25. doi: 10.1089/neu.2010.1332. Epub 2010 Dec 27.

Abstract

While recent studies have demonstrated the importance of the initial mechanical insult in the severity of spinal cord injury, there is a lack of information on the detailed cord-column interaction during such events. In vitro models have demonstrated the protective properties of the cerebrospinal fluid, but visualization of the impact is difficult. In this study a computational model was developed in order to clarify the role of the cerebrospinal fluid and provide a more detailed picture of the cord-column interaction. The study was validated against a parallel in vitro study on bovine tissue. Previous assumptions about complete subdural collapse before any cord deformation were found to be incorrect. Both the presence of the dura mater and the cerebrospinal fluid led to a reduction in the longitudinal strains within the cord. The division of the spinal cord into white and grey matter perturbed the bone fragment trajectory only marginally. In conclusion, the cerebrospinal fluid had a significant effect on the deformation pattern of the cord during impact and should be included in future models. The type of material models used for the spinal cord and the dura mater were found to be important to the stress and strain values within the components, but less important to the fragment trajectory.

摘要

尽管最近的研究表明了初始机械损伤在脊髓损伤严重程度中的重要性,但对于此类事件中脊髓柱相互作用的详细信息仍知之甚少。体外模型已经证明了脑脊液的保护特性,但对撞击的可视化较为困难。在这项研究中,开发了一种计算模型,以便阐明脑脊液的作用,并提供更详细的脊髓柱相互作用的图像。该研究与牛组织的平行体外研究进行了验证。发现之前关于在脊髓变形之前完全硬脑膜下塌陷的假设是不正确的。硬脑膜和脑脊液的存在都导致脊髓内的纵向应变减少。将脊髓分为白质和灰质仅略微改变了骨碎片的轨迹。总之,脑脊液在撞击过程中对脊髓的变形模式有重大影响,应包含在未来的模型中。用于脊髓和硬脑膜的材料模型的类型被发现对各组成部分内的应力和应变值很重要,但对碎片轨迹的影响则较小。

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