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LATTICE BOLTZMANN MODELING OF THROMBOSIS IN GIANT ANEURYSMS

机译:巨大动脉瘤的血栓形成的格子Boltzmann建模

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We propose a numerical model of blood flow and blood clotting whose purpose is to describe thrombus formation in cerebral aneurysms. We identify possible mechanisms that can cause occurence of spontaneous thrombosis in unruptured giant intracranial aneurysms. Our main claim is that, under normal conditions, there is a low shear rate threshold below which thrombosis starts and growths. This assumption is supported by several evidences from literature. The proposed mechanisms are incorporated into a Lattice Boltzmann (LB) model for blood flow and platelets adhesion and aggregation. Numerical simulations show that the low shear rate threshold assumption together with aneurysm geometry account well for the observations.
机译:我们提出了一种血流和血液凝结的数值模型,其目的是描述脑动脉瘤中的血栓形成。我们确定了可能导致未破裂的巨大颅内动脉瘤中自发性血栓形成发生的机制。我们的主要主张是,在正常情况下,存在一个较低的剪切速率阈值,低于该阈值血栓就会开始形成并增长。该假设得到了文献的一些证据的支持。所提出的机制已被纳入Lattice Boltzmann(LB)模型中,用于血流以及血小板的粘附和聚集。数值模拟表明,低剪切速率阈值假设与动脉瘤的几何形状一起很好地说明了观察结果。

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