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Failure properties of vena cava tissue due to deep penetration during filter insertion

机译:滤器插入过程中由于深度穿透而导致的腔静脉组织的失效特性

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In this work, we use an in-vitro mechanical test to explore the resistance of biaxially stretched vena cava tissue against deep perforation and a methodology which integrates experimental and numerical modeling to identify constitutive fracture properties of the vena cava. Six sheep vena cava were harvested just after killing, and cyclic uniaxial tension tests in longitudinal and circumferential directions and biaxial deep penetration tests were performed. After that, we use a nonlinear finite element model to simulate in vitro penetration of the cava tissue in order to fit the fracture properties under penetration of the vena cava by defining a cohesive fracture zone. An iterative process was developed in order to fit the fracture properties of the vena cava using the previously obtained experimental results. The proposed solutions were obtained with fracture energy of 0.22 or 0.33 N/mm. In comparison with the experimental data, the simulation using , , and parameters () is in good agreement with results from penetration experiments of cava tissue. It is noticeable that the parameter estimation process of the fracture behavior is more accurate than the estimation process of the elastic behavior for the toe region of the curve.
机译:在这项工作中,我们使用体外机械测试来探索双轴拉伸的腔静脉组织对深孔穿孔的抵抗力,以及将实验和数值模型相结合以识别腔静脉本构性骨折特性的方法。杀死后立即收获了六个绵羊腔静脉,并进行了沿纵向和周向的循环单轴拉伸试验以及双轴深穿透试验。之后,我们使用非线性有限元模型来模拟腔静脉的体外穿透,以通过定义内聚性骨折区域来适应腔静脉穿透下的骨折特性。利用先前获得的实验结果,开发了一种迭代方法以适应腔静脉的骨折特性。所提出的解决方案的断裂能为0.22或0.33 N / mm。与实验数据相比,使用,和参数()进行的仿真与腔组织渗透实验的结果非常吻合。值得注意的是,对于弯曲的脚趾区域,断裂行为的参数估计过程比弹性行为的估计过程更准确。

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