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Patient-specific Blood Flow Simulation to Improve Intracranial Aneurysm Diagnosis

机译:特定于患者的血流模拟可改善颅内动脉瘤的诊断

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We present a novel simulation system of blood flow through intracranial aneurysms including the interaction between blood lumen and vessel tissue. It provides the means to estimate rupture risks by calculating the distribution of pressure and shear stresses in the aneurysm, in order to support the planning of clinical interventions. So far, this has only been possible with commercial simulation packages originally targeted at industrial applications, whereas our implementation focuses on the intuitive integration into clinical workflow. Due to the time-critical nature of the application, we exploit most efficient state-of-the-art numerical methods and technologies together with high performance computing infrastructures (Austrian Grid). Our system builds a three-dimensional virtual replica of the patient's cerebrovascular system from X-ray angiography, CT or MR images. The physician can then select a region of interest which is automatically transformed into a tetrahedral mesh. The differential equations for the blood flow and the wall elasticity are discretized via the finite element method (FEM), and the resulting linear equation systems are handled by an algebraic multigrid (AMG) solver. The wall displacement caused by the blood pressure is calculated using an iterative fluid-structure interaction (FSI) algorithm, and the fluid mesh is deformed accordingly. First simulation results on measured patient geometries show good medical relevance for diagnostic decision support.
机译:我们提出了一种新型的颅内动脉血流模拟系统,包括血管腔与血管组织之间的相互作用。它提供了一种通过计算动脉瘤中压力和切应力的分布来估计破裂风险的方法,以支持临床干预措施的规划。到目前为止,只有最初针对工业应用的商业仿真程序包才有可能实现这一目标,而我们的实现则着眼于将其直观集成到临床工作流程中。由于应用程序的时间紧迫性,我们利用最高效的最新数值方法和技术以及高性能计算基础架构(奥地利网格)。我们的系统根据X射线血管造影,CT或MR图像构建患者脑血管系统的三维虚拟副本。然后,医生可以选择感兴趣的区域,该区域会自动转换为四面体网格。血流和壁弹性的微分方程通过有限元方法(FEM)离散化,所得线性方程组由代数多重网格(AMG)求解器处理。使用迭代的流体-结构相互作用(FSI)算法计算由血压引起的壁位移,并使流体网格相应变形。对患者几何形状的初步模拟结果显示出良好的医学相关性,可为诊断决策提供支持。

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