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Measuring 3D shape similarity by graph-based matching of the medial scaffolds

机译:通过基于图形的内侧支架匹配来测量3D形状相似性

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We propose to measure 3D shape similarity by matching a medial axis (MA) based representation-the medial scaffold (MS). Shape similarity is measured as the minimum extent of deformation necessary for one shape to match another, guided by representing the shapes using the MS. This approach is an extension of an approach to match 2D shapes by matching their shockgraphs, whereas here in 3D the MS is in an extended form of a hypergraph. The MS representation is both hierarchical and complete. Our approach approximates the theoretical optimal deformation path between two shapes by modeling shape deformations as discrete topological changes (the transitions) of the MS hypergraphs, where each graphical transition is associated with a cost measurement defined by the transition. Our algorithm first regularizes the MS hypergraphs and uses the graduated assignment graph-matching scheme to match the hypergraphs. A set of compatibility functions is defined to measure the pairwise similarity between the MS nodes, curves (graph links), and sheets (hyperlinks). Results on matching carpal bones and shapes from the SHREC'10 non-rigid dataset promise its potential in a range of applications.
机译:我们建议通过匹配基于内侧轴(MA)的表示形式-内侧支架(MS)来测量3D形状相似性。形状相似度是一种形状匹配另一种形状所必需的最小变形程度,它通过使用MS表示形状来指导。这种方法是通过匹配2D形状的冲击图来匹配2D形状的方法的扩展,而此处的3D中,MS是超图的扩展形式。 MS表示既是分层的又是完整的。我们的方法通过将形状变形建模为MS超图的离散拓扑变化(过渡)来逼近两个形状之间的理论最佳变形路径,其中每个图形过渡都与过渡定义的成本度量相关联。我们的算法首先对MS超图进行正则化,然后使用分级分配图匹配方案来对超图进行匹配。定义了一组兼容性函数,以测量MS节点,曲线(图形链接)和图纸(超链接)之间的成对相似性。 SHREC'10非刚性数据集中匹配的腕骨和形状的结果证明了其在一系列应用中的潜力。

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