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Conformal-Based Surface Morphing and Multi-Scale Representation

机译:基于共形的曲面变形和多尺度表示

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This paper presents two algorithms, based on conformal geometry, for the multi-scale representations of geometric shapes and surface morphing. A multi-scale surface representation aims to describe a 3D shape at different levels of geometric detail, which allows analyzing or editing surfaces at the global or local scales effectively. Surface morphing refers to the process of interpolating between two geometric shapes, which has been widely applied to estimate or analyze deformations in computer graphics, computer vision and medical imaging. In this work, we propose two geometric models for surface morphing and multi-scale representation for 3D surfaces. The basic idea is to represent a 3D surface by its mean curvature function, H, and conformal factor function λ, which uniquely determine the geometry of the surface according to Riemann surface theory. Once we have the ( λ , H ) parameterization of the surface, post-processing of the surface can be done directly on the conformal parameter domain. In particular, the problem of multi-scale representations of shapes can be reduced to the signal filtering on the λ and H parameters. On the other hand, the surface morphing problem can be transformed to an interpolation process of two sets of ( λ , H ) parameters. We test the proposed algorithms on 3D human face data and MRI-derived brain surfaces. Experimental results show that our proposed methods can effectively obtain multi-scale surface representations and give natural surface morphing results.
机译:本文提出了两种基于共形几何的算法,用于几何形状和表面变形的多尺度表示。多尺度表面表示旨在描述不同几何细节级别的3D形状,从而可以有效地分析或编辑全局或局部尺度的表面。表面变形是指在两个几何形状之间进行插值的过程,该过程已广泛应用于估计或分析计算机图形,计算机视觉和医学成像中的变形。在这项工作中,我们提出了用于表面变形和3D表面多尺度表示的两个几何模型。基本思想是用3D表面的平均曲率函数H和保形因子函数λ表示3D表面,根据黎曼表面理论唯一地确定表面的几何形状。一旦我们对表面进行了(λ,H)参数化,就可以直接在保形参数域上对表面进行后处理。特别地,形状的多尺度表示的问题可以减少为对λ和H参数进行信号滤波。另一方面,可以将表面变形问题转换为两组(λ,H)参数的插值过程。我们在3D人脸数据和MRI衍生的大脑表面上测试了提出的算法。实验结果表明,我们提出的方法可以有效地获得多尺度的表面表示并给出自然的表面变形结果。

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