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Meaningful Mesh Segmentation Guided by the 3D Short-Cut Rule

机译:由3D短切规则引导的有意义的网格分割

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Extended from the 2D silhouette-parsing short-cut rule [25], a 3D short-cut rule, which states "as long as a cutting path mainly crosses local skeleton and lies in concave regions, the shorter path is (other things being equal) the better", is defined in the paper. Guided by the 3D short-cut rule, we propose a hierarchical model decomposition paradigm, which integrates the advantages of the skeleton-driven and minima-rule-based meaningful segmentation. Our method defines geometrical and topological functions of skeleton to locate initial critical cutting points, and then employs salient contours with negative minimal principal curvature values to determine natural boundary curves among parts. Sufficient experiments have been carried out on many meshes, and have shown that our framework could provide more perceptual results than pure skeleton-driven or minima-rule-based algorithm.
机译:从2D轮廓解析的短割规则[25],一个3D短切规则,它的状态“只要切割路径主要穿过当地骨架并位于凹陷区域,较短的路径就是(其他东西相等)更好的“,在论文中定义。由3D短剪规则指导,我们提出了一个分层模型分解范式,它集成了骨架驱动和基于规则的有意义分割的骨架驱动和最小规则的优势。我们的方法定义了骨架的几何和拓扑功能,以定位初始关键切割点,然后使用负值的突出轮廓,负最小的主曲率值来确定部件之间的自然边界曲线。已经在许多网格上进行了足够的实验,并且已经表明我们的框架可以提供比纯骨架驱动或最小规则的算法更多的感知结果。

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