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Patient-specific aortic valve blood flow simulations

机译:特定于患者的主动脉瓣血流模拟

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In this paper, we present a novel framework to simulate and visualize blood flow at high levels of detail through the aortic valve. We generate a 4D reconstruction of the aortic root using contrast-enhanced CT imagery, and attach it to a model of the left ventricle segmented from the Visible Human Project dataset. This full R-R animated model is then used as solid boundary conditions in a highly-accurate FDM Navier-Stokes fluid solver. We perform this simulation on both healthy and diseased aortic hearts, and then build visualizations of the velocity and vorticity fields produced by the simulator. In our quantitative analysis of the flow, we find significantly elevated vorticities in the diseased valve simulation. These results produce a view of the flow fields clearer than previous imaging techniques can provide.
机译:在本文中,我们提出了一个新颖的框架来模拟和可视化通过主动脉瓣的血流细节。我们使用对比增强的CT图像生成主动脉根的4D重建,并将其附加到从“可见的人类项目”数据集中分割的左心室模型。然后,将完整的R-R动画模型用作高精度FDM Navier-Stokes流体求解器中的固体边界条件。我们在健康和患病的主动脉心脏上都执行此模拟,然后建立由模拟器产生的速度场和涡度场的可视化。在对流量进行定量分析时,我们发现在病态阀门模拟中涡度显着升高。这些结果提供了比以前的成像技术所能提供的更清晰的流场视图。

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