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Centerlines extraction for lumen model of human vasculature for computer-aided simulation of intravascular procedures

机译:用于计算机辅助模拟血管内手术的人体脉管腔模型中心线提取

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The computer-aided surgical simulation aims to provide an economic tool of effectiveness and convenience for the training process. In building this simulation system, the construction of the virtual anatomic environment is one of the major tasks. It provides the virtual tools with the scenario in which they are manipulated by the trainee. In intravascular surgery simulation, the surface model of the blood vessels is the most important part of the virtual environment. In order to achieve better performances in the simulation of path planning and navigation, the surface model based on real patient's CTA data needs further process. We proposed in this paper an approach to extract the centerlines of each segment of the image-based surface model of the blood vessels. The surface model is firstly processed to check the connectivity of the consisting polygons in order to extract the largest connected region within the surface. Next, the resulting surface is smoothed by a windowed sinc function kernel with proper parameters. After the normal vectors of the smoothed surface are computed, the surface is subdivided and the centerlines of the surface model are computed by using the power crust algorithm. The experimental results show that the approach is capable of extracting the centerlines of the vessel model.
机译:计算机辅助的手术模拟旨在为培训过程提供一种经济有效且方便的工具。在构建该仿真系统中,虚拟解剖环境的构建是主要任务之一。它为虚拟工具提供了由学员进行操作的场景。在血管内手术模拟中,血管表面模型是虚拟环境中最重要的部分。为了在路径规划和导航的仿真中获得更好的性能,基于实际患者CTA数据的表面模型需要进一步处理。我们在本文中提出了一种提取基于图像的血管表面模型的每个部分的中心线的方法。首先对表面模型进行处理,以检查组成的多边形的连通性,以提取表面内最大的连接区域。接下来,通过带有适当参数的开窗Sinc函数核对生成的表面进行平滑处理。在计算出平滑表面的法线向量后,使用Power Crust算法对表面进行细分,并计算出表面模型的中心线。实验结果表明,该方法能够提取血管模型的中心线。

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