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A poroelastic model valid in large strains with applications to perfusion in cardiac modeling

机译:多孔弹性模型在大应变中有效,并在心脏模型中应用于灌注

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This paper is motivated by the modeling of blood flows through the beating myocardium, namely cardiac perfusion. As in other works, perfusion is modeled here as a flow through a poroelastic medium. The main contribution of this study is the derivation of a general poroelastic model valid for a nearly incompressible medium which experiences finite deformations. A numerical procedure is proposed to iteratively solve the porous flow and the nonlinear poroviscoelastic problems. Three-dimensional numerical experiments are presented to illustrate the model. The first test cases consist of typical poroelastic configurations: swelling and complete drainage. Finally, a simulation of cardiac perfusion is presented in an idealized left ventricle embedded with active fibers. Results show the complex temporal and spatial interactions of the muscle and blood, reproducing several key phenomena observed in cardiac perfusion.
机译:本文的动机是通过对跳动的心肌的血流建模(即心脏灌注)进行激励。与其他工作一样,此处将灌注建模为通过多孔弹性介质的流动。这项研究的主要贡献是推导了适用于经历有限变形的几乎不可压缩的介质的通用多孔弹性模型。提出了一种数值方法来迭代求解多孔渗流和非线性多孔黏弹性问题。进行了三维数值实验以说明该模型。第一个测试案例包括典型的多孔弹性构型:膨胀和完全排水。最后,在理想的左心室中植入了活性纤维,对心脏灌注进行了模拟。结果表明,肌肉和血液之间复杂的时空相互作用,重现了心脏灌注中观察到的几个关键现象。

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