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A three-dimensional particle simulation of the formation and collapse of a primary thrombus

机译:一次血栓形成和塌陷的三维粒子模拟

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This report presents a technique based on the particle method to simulate the process of thrombogenesis while considering platelet aggregation under the influence of fluid dynamics. In the employed particle method, the blood region was discretized by particles that were assumed to have the characteristics of plasma and platelets. The moving particle semi-implicit (MPS) method developed for incompressible viscous flow was applied to the flow of plasma and platelets. Adhesion of platelets to the injured vessel wall was expressed by a spring force acting between them. The same modeling was applied for the aggregation of platelets. Three-dimensional computer simulation of thrombogenesis was performed in a rectangular flow channel under the condition of Re = 0.02. We demonstrated that the proposed method can simulate the formation and destruction of a thrombus with the inclusion of feedback reactions of thrombus development and flow. The results revealed that the growth rate of a thrombus, its height, and time required from the beginning of thrombus formation to its collapse vary according to the flow rate, indicating that flow dynamics plays an important role in regulating the development of a primary thrombus.
机译:该报告提出了一种基于粒子方法的技术,可在考虑流体动力学影响下考虑血小板聚集的同时模拟血栓形成过程。在所采用的颗粒法中,通过假定具有血浆和血小板特征的颗粒使血液区域离散。为不可压缩的粘性流动开发的移动粒子半隐式(MPS)方法应用于血浆和血小板的流动。血小板粘附在受伤的血管壁上是通过作用在它们之间的弹簧力来表示的。将相同的模型应用于血小板的聚集。在Re = 0.02的条件下,在矩形流动通道中进行了血栓形成的三维计算机模拟。我们证明了所提出的方法可以模拟血栓的形成和破坏,包括血栓形成和流动的反馈反应。结果表明,血栓的生长速率,高度,从血栓形成到破裂所需的时间根据流速而变化,表明血流动力学在调节原发性血栓的形成中起着重要作用。

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