Shape correspondence is a fundamental problem in computer graphics and vision, with applications in various problems including animation, texture mapping, robotic vision, medical imaging, archaeology and many more. In settings where the shapes are allowed to undergo non-rigid deformations and only partial views are available, the problem becomes very challenging. To this end, we present a non-rigid multi-part shape matching algorithm. We assume to be given a reference shape and its multiple parts undergoing a non-rigid deformation. Each of these query parts can be additionally contaminated by clutter, may overlap with other parts, and there might be missing parts or redundant ones. Our method simultaneously solves for the segmentation of the reference model, and for a dense correspondence to (subsets of) the parts. Experimental results on synthetic as well as real scans demonstrate the effectiveness of our method in dealing with this challenging matching scenario.
翻译:形状对应是计算机图象和视觉中的一个基本问题, 包括动画、 纹理映射、 机器人视觉、 医学成像、 考古学等各种问题的应用。 在允许形状发生非硬化变形且只有部分视图的环境下, 问题变得非常具有挑战性 。 为此, 我们提出了一个非硬化多部分形状匹配算法 。 我们假设一个参考形状及其多个部分正在经历非硬化变形。 这些查询部件都可能受到杂乱的污染, 可能与其他部件重叠, 并且可能缺少部件或冗余部件 。 我们的方法同时解决了参考模型的分解, 以及与部分( 子组) 的密集通信 。 合成和真实扫描的实验结果显示了我们应对这种充满挑战的匹配情景的方法的有效性 。