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A robust and efficient valve model based on resistive immersed surfaces

机译:基于电阻浸入式表面的稳健高效的阀门模型

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Symetis S.A., Chemin de la Venoge 11, 1024 Ecublens, Switzerland; A procedure for modeling the heart valves is presented. Instead of modeling complete leaflet motion, leaflets are modeled in open and closed configurations. The geometry of each configuration can be defined, for example, from in vivo image data. This method enables significant computational savings compared with complete fluid-structure interaction and contact modeling, while maintaining realistic three-dimensional velocity and pressure distributions near the valve, which is not possible from lumped parameter modeling. Leaflets are modeled as immersed, fixed surfaces over which a resistance to flow is assigned. On the basis of local flow conditions, the resistance values assigned for each configuration are changed to switch the valve between open and closed states. This formulation allows for the pressure to be discontinuous across the valve. To illustrate the versatility of the model, realistic and patient-specific simulations are presented, as well as comparison with complete fluid-structure interaction simulation.
机译:Symetis S.A.,瑞士,1024 Ecublens,Chemin de la Venoge;提出了用于心脏瓣膜建模的程序。代替建模完整的小叶运动,以开放和封闭配置对小叶进行建模。每个配置的几何形状可以例如根据体内图像数据来定义。与完整的流体-结构相互作用和接触建模相比,该方法可节省大量计算量,同时在阀附近保持逼真的三维速度和压力分布,这是集总参数建模无法实现的。小叶建模为浸没的固定表面,并在其上分配了流动阻力。根据当地的流量条件,为每种配置分配的电阻值会发生变化,以在打开和关闭状态之间切换阀门。该公式允许整个阀的压力不连续。为了说明该模型的多功能性,提出了现实的和特定于患者的模拟,并与完整的流体-结构相互作用模拟进行了比较。

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