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首页> 外文期刊>Medical image analysis >VS: a surface-based system for topological analysis, quantization and visualization of voxel data.
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VS: a surface-based system for topological analysis, quantization and visualization of voxel data.

机译:VS:基于表面的系统,用于体素数据的拓扑分析,量化和可视化。

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摘要

VS is a simple system consisting of several techniques for various volumetric problems. Based on the marching cubes algorithm, it operates with one space sweep through the voxels and extracts all topological information: detection of all isosurfaces, partitioning the data into connected components on the basis of surface connectivity, and association of surfaces with any internal surfaces to arbitrary levels of nesting. VS extends Baker's "Weaving Wall" method by associating topological cavities with their outer surface, and by using efficient data structures for the voxel traversal and for the connected component detection. Its runtime, on average, is only about 2% more than the speeded-up marching cubes algorithm. VS operates on the original voxels without using the contour tree required by other approaches. Using linear-time preprocessing, VS constructs a data structure which can be utilized for any isovalue or interval of isovalues. An accurate estimate of each component's volume is based on the volume enclosed by the outer surface, minus the volume of any internal cavities. VS enables noise reduction by eliminating components (and cavities) with a small volume. Different components can be rendered with different visual attributes, and cutaway views by arbitrary cut-planes are displayed as if the objects were solid, without adding any new surface patches to match the intersection.
机译:VS是一个简单的系统,由多种解决各种体积问题的技术组成。基于行进立方体算法,它可以一次扫过体素进行操作并提取所有拓扑信息:检测所有等值面,根据表面连接性将数据划分为相连的分量,以及将任何内部表面与任意内部表面关联嵌套级别。 VS通过将拓扑空腔与它们的外表面相关联,并使用有效的数据结构进行体素遍历和连接的零部件检测,扩展了Baker的“编织墙”方法。平均而言,其运行时间仅比加速行军多维数据集算法多大约2%。 VS在原始体素上进行操作,而无需使用其他方法所需的轮廓树。使用线性时间预处理,VS构造了可用于任何等值或等值区间的数据结构。每个组件的体积的准确估算是基于外表面封闭的体积减去任何内部空腔的体积。 VS通过消除体积小的零件(和空腔)来降低噪音。可以使用不同的视觉属性来渲染不同的组件,并且可以显示任意剖切面的剖视图,就好像对象是实体一样,而无需添加任何新的曲面补丁以匹配相交。

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