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Blood Flow Analysis in Portal Vein System - Unsteady-State Case Study

机译:门静脉系统的血流分析-非稳态案例研究

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Anatomical features and a complex vascular sys tem characterize the liver. The blood flow results as a complex interaction between fluid, vascular system complex geometry and liver functional and structural features. The disease pres ence produces pathological changes that may induce hemody namic perturbations not only due to geometry modification but especially due to liver perfusion alteration. The analysis of the blood flow dependence on the geometry variability in phy siological condition could emerge in its parameterization and quantification. This may eliminate the confusion between blood flow modification due to geometry variability in physio logical conditions and flow alteration due to pathological con ditions or congenital anomalies presence. In this paper the analysis focuses on portal vein system and consists in blood flow analysis under unsteady-state conditions. The study involves the investigation of 12 patients by MRI techniques followed by 3-D portal vein system geometry acqui sition, blood flow simulations based on mathematical models that include constitutive equations describing the hemodyman ics and its relations with the deformable vessels wall. The computational technique applied to model the blood flow ap proaches both the velocity field and the pressure field. The vessels wall was considered elastic, coupling in this way the vessel/wall deformability problem. The blood flow analysis in physiological conditions enables the improvement of understanding of the complex blood flow behavior in the portal vein system; enables to identify critical information and to parameterize the domain of normal portal vein circulation.
机译:肝脏具有解剖学特征和复杂的血管系统。血液流动是流体,血管系统的复杂几何形状与肝功能和结构特征之间复杂的相互作用所导致的。该疾病的存在产生病理变化,不仅由于几何形状的改变,而且尤其由于肝脏灌注的改变,可能引起血性的纳米扰动。在生理学条件下对血流依赖于几何变异性的分析可能会出现在其参数化和量化中。这可以消除由于生理状况中的几何形状可变性引起的血流改变与由于病理条件或先天性异常的存在而引起的血流改变之间的混淆。本文的分析重点是门静脉系统,包括非稳态条件下的血流分析。这项研究涉及通过MRI技术对12例患者进行调查,然后进行3-D门静脉系统几何采集,基于数学模型的血流模拟,其中包括描述血流动力学及其与可变形血管壁的关系的本构方程。用于对血流建模的计算技术可同时提供速度场和压力场。血管壁被认为是弹性的,以这种方式耦合了血管/壁的可变形性问题。在生理条件下进行血流分析可以提高对门静脉系统中复杂血流行为的了解;能够识别关键信息并参数化正常门静脉循环的范围。

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