首页> 外文期刊>International journal for numerical methods in biomedical engineering >Calibration of interface properties and application to a finite element model for predicting vena cava filter–induced vein wall failure
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Calibration of interface properties and application to a finite element model for predicting vena cava filter–induced vein wall failure

机译:界面特性的校准及其在预测腔静脉滤过器诱发的静脉壁衰竭的有限元模型中的应用

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摘要

We present a computational framework that integrates experimental techniques and finite element modeling to calibrate material fracture parameters of the vena cava and the interaction properties between a retrievable filter (Gunther Tulip) and the vena cava wall. The fitted parameters were then used to analyze the interaction of the inferior vena cava filter with the vena cava during the deployment process. An idealized cava finite element model was then developed including residual stresses and physiological pressure conditions. Filter deployment was simulated, and a comprehensive study of tissue-filter interaction was performed by cohesive surface modeling. Simulations predict that there are no fracture areas for either model, so we can conclude that there is no penetration of the anchor into the vena cava. This suggests there are other physiological situations, such as the Valsalva maneuver, which could produce this penetration observed on some patients.
机译:我们提出了一个计算框架,该框架整合了实验技术和有限元建模,以校准腔静脉的材料断裂参数以及可收回的过滤器(Gunther Tulip)和腔静脉壁之间的相互作用特性。然后,将拟合的参数用于分析部署过程中下腔静脉滤器与腔静脉的相互作用。然后,开发了理想的卡瓦有限元模型,其中包括残余应力和生理压力条件。模拟过滤器的部署,并通过内聚表面模型对组织过滤器的相互作用进行了全面的研究。仿真预测,这两种模型都没有骨折区域,因此我们可以得出结论,锚没有穿透到腔静脉中。这表明还有其他生理情况,例如Valsalva动作,可能会在某些患者上产生这种穿透。

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