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March 3, 2026Journal of Computer-Aided Design & Computer Graphics0 citationsOpen Access

Mesh Deformation for Arbitrary Polygonal Cages Using Generalized Barycentric Coordinates

ZMZiming MoCHCheng He

Key Points

  • Mesh deformation alters the shape of objects while preserving topology, enhancing visual effects.
  • The method achieves rapid processing speeds through GPU acceleration, facilitating real-time applications.
  • Wachspress coordinates interpolate control cages made of arbitrary polygons into triangular meshes for flexibility.
  • Maintaining symmetry of initial models is a significant improvement over traditional mesh deformation methods.

Abstract

Mesh deformation is an important task in computer graphics. It is used to dynamically change the shape of an object by changing the position of mesh vertices while preserving its topology. It has a wide range of applications in the fields of animation, game development and virtual reality. Traditional cage-based mean value coordinates mesh deformation methods are only applicable to control cages composed of triangular meshes or quadrilateral meshes. To address this problem, we propose a cage-based mean value coordinates mesh deformation method, which is applicable to control cages composed of arbitrary polygonal meshes, including non-planar polygons. The proposed method first preprocess planar polygons to obtain subdivided triangular meshes; then polygons of the control cage are interpolated using Wachspress coordinates and the results of the preprocessing, so as to subdivide the control cage composed of arbitrary polygons into triangular mesh; finally, the results of the mesh deformation are obtained by using the GPU-accelerated mean valued coordinates mesh deformation method in the subdivided cage. Compared with traditional method, the proposed method can maintain symmetry of the initial model and can run at a fast speed.

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Cite This Study

Mo et al. (2025) studied this question.

synapsesocial.com/papers/69a76050c6e9836116a2cef8https://doi.org/10.3724/sp.j.1089.2025-00224
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