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Efficient boundary surface reconstruction from heterogeneous volumetric data via tri-prism decomposition

机译:通过三棱镜分解从异质体数据进行有效的边界面重构

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We propose a novel and efficient approach for extracting the boundary surfaces from heterogeneous volumetric data in one pass. Each homogeneous material component is surrounded by a boundary surface, which is composed of piecewise 2-manifold meshes. The key idea is to subdivide each cubical voxel into two tri-prism voxels and to construct the boundary surfaces in a dimension-ascending (DA) way, i.e., from points to lines and then to faces. The extracted boundary surfaces can fully isolate the homogeneous material components, and the information on intersections between boundary surfaces can be explicitly retrieved. The surface reconstruction process can be accomplished efficiently by adopting a case table. The proposed approach is independent of the number of material types employed. Additionally, a new case index encoding approach is proposed to encode all possible cases in a heterogeneous tri-prism voxel that can verify the proposed DA approach in an exhaustive enumeration manner. The experimental results demonstrate that our approach can accurately and efficiently generate a boundary representation of heterogeneous volumetric data.
机译:我们提出了一种新颖而有效的方法,用于一次从异质体数据中提取边界表面。每个均质材料组件都由边界表面围绕,该边界表面由分段的2流形网格组成。关键思想是将每个立方体体素细分为两个三棱镜体素,并以尺寸提升(DA)的方式构造边界表面,即从点到线再到面。提取的边界表面可以完全隔离均质材料成分,并且可以显式检索边界表面之间的相交处的信息。通过采用案例表可以有效地完成表面重建过程。所提出的方法与所采用的材料类型的数量无关。另外,提出了一种新的案例索引编码方法,以在异构三棱镜体素中对所有可能的案例进行编码,可以用穷举枚举的方式验证提出的DA方法。实验结果表明,我们的方法可以准确有效地生成异构体数据的边界表示。

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