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Skeleton Cutsȁ4;An Efficient Segmentation Method for Volume Rendering

机译:骨架切割ȁ4;有效的体绘制分割方法

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摘要

Volume rendering has long been used as a key technique for volume data visualization, which works by using a transfer function to map color and opacity to each voxel. Many volume rendering approaches proposed so far for voxels classification have been limited in a single global transfer function, which is in general unable to properly visualize interested structures. In this paper, we propose a localized volume data visualization approach which regards volume visualization as a combination of two mutually related processes: the segmentation of interested structures and the visualization using a locally designed transfer function for each individual structure of interest. As shown in our work, a new interactive segmentation algorithm is advanced via skeletons to properly categorize interested structures. In addition, a localized transfer function is subsequently presented to assign optical parameters via interested information such as intensity, thickness and distance. As can be seen from the experimental results, the proposed techniques allow to appropriately visualize interested structures in highly complex volume medical data sets.
机译:长期以来,体绘制一直用作体数据可视化的关键技术,该技术通过使用传递函数将颜色和不透明度映射到每个体素而起作用。迄今为止,为体素分类提出的许多体绘制方法都被限制在单个全局传递函数中,这通常无法正确显示感兴趣的结构。在本文中,我们提出了一种本地化的体积数据可视化方法,该方法将体积可视化视为两个相互关联的过程的组合:对感兴趣的结构进行分割,并对每个感兴趣的单个结构使用局部设计的传递函数进行可视化。如我们的工作所示,通过骨骼改进了一种新的交互式分割算法,以对感兴趣的结构进行正确分类。另外,随后呈现局部传递函数,以通过感兴趣的信息(例如强度,厚度和距离)分配光学参数。从实验结果可以看出,所提出的技术允许在高度复杂的体量医学数据集中适当地可视化感兴趣的结构。

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