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Simulation of blood flow in deformable vessels using subject-specific geometry and spatially varying wall properties

机译:使用对象特定的几何形状和空间变化的壁属性模拟可变形血管中的血流

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Simulation of blood flow using image-based models and computational fluid dynamics has found widespread application to quantifying hemodynamic factors relevant to the initiation and progression of cardiovascular diseases and for planning interventions. Methods for creating subject-specific geometric models from medical imaging data have improved substantially in the last decade but for many problems, still require significant user interaction. In addition, while fluid-structure interaction methods are being employed to model blood flow and vessel wall dynamics, tissue properties are often assumed to be uniform. In this paper, we propose a novel workflow for simulating blood flow using subject-specific geometry and spatially varying wall properties. The geometric model construction is based on 3D segmentation and geometric processing. Variable wall properties are assigned to the model based on combining centerline-based and surface-based methods. We finally demonstrate these new methods using an idealized cylindrical model and two subject-specific vascular models with thoracic and cerebral aneurysms. Copyright © 2010 John Wiley & Sons, Ltd.
机译:使用基于图像的模型和计算流体动力学对血流进行模拟已广泛应用于量化与心血管疾病的发生和发展有关的血液动力学因素,并用于计划干预措施。在过去的十年中,从医学成像数据创建特定于对象的几何模型的方法已经有了很大的改进,但是对于许多问题,仍然需要大量的用户交互。另外,虽然采用流体-结构相互作用方法来模拟血流和血管壁动力学,但通常认为组织特性是一致的。在本文中,我们提出了一种新颖的工作流程,用于使用特定于对象的几何形状和空间变化的壁属性来模拟血流。几何模型的构建基于3D分割和几何处理。结合基于中心线和基于曲面的方法,将可变的墙属性分配给模型。最后,我们使用理想的圆柱模型和两个带有胸和脑动脉瘤的特定于受试者的血管模型来演示这些新方法。版权所有©2010 John Wiley&Sons,Ltd.

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