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Blood vessel tissue prestress modeling for vascular fluid-structure interaction simulation

机译:用于血管流固耦合模拟的血管组织预应力建模

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In this paper we present a new strategy for obtaining blood vessel tissue prestress for use in fluid-structure interaction (FSI) analysis of vascular blood flow. The method consists of a simple iterative procedure and is applicable to a large class of vascular geometries. The formulation of the solid problem is modified to account for the tissue prestress by employing an additive decomposition of the second Piola-Kirchhoff stress tensor. Computational results using patient-specific models of cerebral aneurysms indicate that tissue prestress plays an important role in predicting hemodynamic quantities of interest in vascular FSI simulations.
机译:在本文中,我们提出了一种获取血管组织预应力的新策略,该策略可用于血管血流的流固耦合(FSI)分析。该方法包括一个简单的迭代过程,并且适用于一大类血管几何形状。通过使用第二个Piola-Kirchhoff应力张量的累加分解,修改了实体问题的公式以解决组织预应力。使用特定于患者的脑动脉瘤模型的计算结果表明,组织预应力在预测血管FSI模拟中感兴趣的血液动力学量方面起着重要作用。

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