An octree isosurface codification based on discrete planes

I. Boada, I. Navazo
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引用次数: 5

Abstract

Describes a method to code a decimated model of an isosurface on an octree representation while maintaining volume data if it is needed. The proposed technique is based on grouping the marching cubes (MC) patterns into five configurations according the topology and the number of planes of the surface that are contained in a cell. Moreover, the discrete number of planes on which the surface lays is fixed. Starting from a complete volume octree, with the isosurface codified at terminal nodes according to the new configuration, a bottom-up strategy is taken for merging cells. Such a strategy allows one to implicitly represent co-planar faces in the upper octree levels without introducing any error. At the end of this merging process, when it is required, a reconstruction strategy is applied to generate the surface contained in the octree intersected leaves. Some examples with medical data demonstrate that a reduction of up to 50% in the number of polygons can be achieved.
基于离散平面的八叉树等值面编码
描述一种方法,该方法在需要时保留体数据的同时,对八叉树表示上的等值面的抽取模型进行编码。该技术基于将行进立方体(MC)模式根据拓扑结构和单元中包含的表面平面数分组为五种构型。此外,表面所处平面的离散数是固定的。从一个完整的体积八叉树开始,根据新的配置在终端节点编码等值面,采用自底向上的策略进行单元合并。这种策略允许在不引入任何错误的情况下隐式地表示上八叉树级别的共面。在合并过程结束时,当需要时,应用重建策略生成包含在八叉树相交叶子中的表面。一些医疗数据的例子表明,多边形的数量最多可以减少50%。
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