We propose svMorph, a framework for interactive virtual sculpting of patient-specific vascular anatomic models. Our framework includes three tools for the creation of tortuosity, aneurysms, and stenoses in tubular vascular geometries. These shape edits are performed via geometric operations on the surface mesh and vessel centerline curves of the input model. The tortuosity tool also uses the physics-based Oriented Particles method, coupled with linear blend skinning, to achieve smooth, elastic-like deformations. Our tools can be applied separately or in combination to produce simulation-suitable morphed models. They are also compatible with popular vascular modeling software, such as SimVascular. To illustrate our tools, we morph several image-based, patient-specific models to create a range of shape changes and simulate the resulting hemodynamics via three-dimensional, computational fluid dynamics. We also demonstrate the ability to quickly estimate the hemodynamic effects of the shape changes via automated generation of associated zero-dimensional lumped-parameter models.
翻译:我们提出 svMorph, 用于交互虚拟雕塑患者特有血管血管解剖模型的框架。 我们的框架包括三个工具, 用于在输卵管血管的地形中创建肿瘤、 动脉瘤和鼻涕。 这些形状编辑是通过输入模型的表面网目和容器中线曲线进行几何操作进行的。 腐蚀工具还使用基于物理的Ordent Particle 方法, 加上线性混合皮肤, 实现平稳的、弹性式的变形。 我们的工具可以单独应用或合并应用, 以生成模拟的变形模型。 这些工具也与流行的血管模型兼容, 如SimVasclascal。 为了说明我们的工具, 我们调整了几个基于图像的、 病人特定的模型, 以创造一系列的形状变化, 并通过三维的计算性液体动态模拟由此产生的体动力学。 我们还展示了通过自动生成相关的零度整模模型来快速估计形状变化的热力效应的能力 。