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拓扑自适应网格变形用于曲面演化、变形和多视图重建。

Topology-adaptive mesh deformation for surface evolution, morphing, and multiview reconstruction.

机构信息

INRIA Grenoble Rhone-Alpes, 655 Avenue de l’Europe, 38330 Montbonnot Saint-Martin, France.

出版信息

IEEE Trans Pattern Anal Mach Intell. 2011 Apr;33(4):823-37. doi: 10.1109/TPAMI.2010.116.

Abstract

Triangulated meshes have become ubiquitous discrete surface representations. In this paper, we address the problem of how to maintain the manifold properties of a surface while it undergoes strong deformations that may cause topological changes. We introduce a new self-intersection removal algorithm, TransforMesh, and propose a mesh evolution framework based on this algorithm. Numerous shape modeling applications use surface evolution in order to improve shape properties such as appearance or accuracy. Both explicit and implicit representations can be considered for that purpose. However, explicit mesh representations, while allowing for accurate surface modeling, suffer from the inherent difficulty of reliably dealing with self-intersections and topological changes such as merges and splits. As a consequence, a majority of methods rely on implicit representations of surfaces, e.g., level sets, that naturally overcome these issues. Nevertheless, these methods are based on volumetric discretizations, which introduce an unwanted precision-complexity trade-off. The method that we propose handles topological changes in a robust manner and removes self-intersections, thus overcoming the traditional limitations of mesh-based approaches. To illustrate the effectiveness of TransforMesh, we describe several challenging applications: surface morphing and 3D reconstruction.

摘要

三角网格已成为无处不在的离散曲面表示。在本文中,我们解决了在曲面经历可能导致拓扑变化的强烈变形时如何保持其流形属性的问题。我们引入了一种新的自交去除算法 TransforMesh,并基于该算法提出了一种网格演化框架。许多形状建模应用程序使用曲面演化来改善形状属性,例如外观或准确性。为此可以考虑使用显式和隐式表示。然而,显式网格表示虽然允许进行精确的曲面建模,但存在难以可靠处理自交和拓扑变化(例如合并和分裂)的固有问题。因此,大多数方法依赖于曲面的隐式表示,例如水平集,这些方法自然可以克服这些问题。然而,这些方法基于体积离散化,这引入了不必要的精度-复杂度权衡。我们提出的方法以稳健的方式处理拓扑变化并去除自交,从而克服了基于网格方法的传统局限性。为了说明 TransforMesh 的有效性,我们描述了几个具有挑战性的应用:曲面变形和 3D 重建。

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