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Multiscale Study on Hemodynamics in Patient-Specific Thoracic Aortic Coarctation

机译:患者特异性胸主动脉造环中血流动力学的多尺度研究

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In this challenge, we intended to mimic the patient's cardiovascular system by using 0D-3D connected multiscale model. The purpose of the multiscale analysis is to find out the appropriate boundary conditions of the innominate artery (IA), left common carotid artery (LCA) and left subclavian artery (LSA) in the local 3D computational fluid dynamics simulation. Firstly, a lumped parameter model(LPM) of the patient's circulatory system was established which could mimic both the rest and stress conditions by adjusting parameters like elastance function of the heart and the peripheral resistance, since that administering is oprenaline leads to the patient's heart beat rate and peripheral resistance changes. Secondly, the values of parameters in the LPM were slightly revised to match the following conditions: 1. provided pressure and flow rate curves, 2. provided blood distribution ratio of the AcsAo, IA, LCA and LSA. Finally, we got the outlet conditions of the IA, LCA and LSA, and then connecting the 0D model and the 3D model at each time step. As the results, we got the streamlines, pressure drop through the coarctation, pressure gradient, and some other parameters by coupled multiscale simuation.
机译:在这一挑战中,我们打算通过使用0d-3d连接的多尺度模型来模仿患者的心血管系统。多尺度分析的目的是在局部3D计算流体动力学模拟中找出无名动脉(IA),左侧颈动脉(LCA)和左锁骨期动脉(LSA)的适当边界条件。首先,建立了患者循环系统的总体参数模型(LPM),这可以通过调整心脏的弹性功能和外周抗性等参数来模仿其静止和应力条件,因为该施用是转身导致患者的心跳速率和外围电阻变化。其次,LPM中的参数值略微修改以匹配以下条件:1。提供压力和流速曲线,2.提供ACSAO,IA,LCA和LSA的血液分布比。最后,我们得到了IA,LCA和LSA的出口条件,然后在每次步骤连接0D模型和3D模型。结果,我们通过耦合的MultiScale Simuation获得了简化,压力梯度,压力梯度和一些其他参数。

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