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Introducing the pro-coagulant contact system in the numerical assessment of device-related thrombosis

机译:介绍促凝血剂接触系统在与器件相关血栓形成的数值评估中

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Thrombosis is a major concern in blood-coated medical devices. Contact activation, which is the initial part of the coagulation cascade in device-related thrombosis, is not considered in current thrombus formation models. In the present study, pro-coagulant reactions including the contact activation system are coupled with a fluid solver in order to evaluate the potential of the contact system to initiate thrombin production. The biochemical/fluid model is applied to a backward-facing step configuration, a flow configuration that frequently appears in medical devices. In contrast to the in vivo thrombosis models in which a specific thrombotic zone (injury region) is set a priori by the user to initiate the coagulation reaction, a reactive surface boundary condition is applied to the whole device wall. Simulation results show large thrombin concentration in regions related to recirculation zones without the need of an a priori knowledge of the thrombus location. The numerical results align well with the regions prone to thrombosis observed in experimental results reported in the literature. This approach could complement thrombus formation models that take into account platelet activity and thrombus growth to optimize a wide range of medical devices.
机译:血栓形成是血液涂层医疗器械的主要问题。接触激活,即凝结级联的凝血级联的初始部分,在当前的血栓形成模型中不考虑。在本研究中,包括接触激活系统的促凝固反应与流体求解器耦合,以便评估接触系统的电位引发凝血酶产生。生物化学/流体模型应用于背面的阶梯配置,这是经常出现在医疗设备中的流动配置。与体内血栓形成(损伤区域)被使用者通过使用者启动凝血反应的特定血栓或损伤区域)的体内血栓形成模型相反,将反应性表面边界条件施加到整个装置壁上。模拟结果显示与再循环区域相关的区域中的大凝血酶浓度,而无需先验的血栓位置。数值结果与在文献中报道的实验结果中观察到的容易血栓形成的地区对齐。这种方法可以补充血栓形成模型,以考虑血小板活动和血栓增长,以优化各种医疗器械。

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