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Patient-specific computational haemodynamics: generation of structured and conformal hexahedral meshes from triangulated surfaces of vascular bifurcations

机译:特定于患者的计算血流动力学:从血管分叉的三角表面生成结构化和共形的六面体网格

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Measuring the blood flow is still limited by current imaging technologies and is generally overcome using computational fluid dynamics (CFD) which, because of the complex geometry of blood vessels, has widely relied on tetrahedral meshes. Hexahedral meshes offer more accurate results with lower-density meshes and faster computation as compared to tetrahedral meshes, but their use is limited by the far more complex mesh generation. We present a robust methodology for conformal and structured hexahedral mesh generation - applicable to complex arterial geometries as bifurcating vessels -starting from triangulated surfaces. Cutting planes are used to slice the lumen surface and to construct longitudinal Bezier splines. Afterwards, an isoparametric transformation is used to map a parametrically defined quadrilateral surface mesh into the vessel volume, resulting in stacks of sections which can then be used for sweeping. Being robust and open source based, this methodology may improve the current standard in patient-specific mesh generation and enhance the reliability of CFD to patient-specific haemodynamics.
机译:测量血流仍然受到当前成像技术的限制,并且通常使用计算流体力学(CFD)来克服,由于血管的复杂几何形状,CFD已广泛依赖四面体网格。与四面体网格相比,六面体网格通过较低密度的网格和更快的计算提供了更准确的结果,但是它们的使用受到更为复杂的网格生成的限制。我们提出了一种可靠的方法,可用于生成保形和结构化的六面体网格-适用于复杂的动脉几何形状(如分叉血管)-从三角形表面开始。切割平面用于切片管腔表面并构造纵向贝塞尔曲线样条曲线。然后,使用等参变换将参数定义的四边形表面网格映射到容器容积中,从而生成可用于清扫的截面堆栈。这种方法基于健壮性和开源性,可以改善患者特定网格生成方面的当前标准,并增强CFD对患者特定血液动力学的可靠性。

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