JOURNAL ARTICLE

Content Adaptive Mesh Representation of Images Using Binary Space Partitions

M. SarkisKlaus Diepold

Year: 2009 Journal:   IEEE Transactions on Image Processing Vol: 18 (5)Pages: 1069-1079   Publisher: Institute of Electrical and Electronics Engineers

Abstract

The interest in content adaptive mesh generation of images has been arising lately due to its wide area of applications in image processing. The major issue is to represent an image with a low number of pixels while preserving its content. These pixels or the nonuniform samples are then used to generate a mesh that approximates the corresponding image. This work presents a novel method based on Binary Space Partitions in combination with three clustering schemes to approximate an image with a mesh. The algorithm has the ability to simultaneously reduce the number of pixels and generate the mesh approximation. The idea is to assume each triangle of the mesh as a plane. Consequently, it will be possible to reconstruct the inlying pixels with planar equations defined from the three nodes of each triangle. If a triangle's equation does not have the ability to reconstruct the pixels lying within up to a predefined error, it is split into two new triangles. Tested on several real images, the proposed method leads to reduced size meshes in a fast manner while retaining the visual quality of the reconstructed images. In addition, it is parallelizable due to the property of Binary Space Partitions which facilitates its application in real-time scenarios.

Keywords:
Pixel Polygon mesh Parallelizable manifold Binary image Computer science Binary number Mesh generation Algorithm Artificial intelligence Mathematics Image processing Computer vision Image (mathematics) Computer graphics (images) Finite element method

Metrics

36
Cited By
10.82
FWCI (Field Weighted Citation Impact)
37
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Computer Graphics and Visualization Techniques
Physical Sciences →  Computer Science →  Computer Graphics and Computer-Aided Design
3D Shape Modeling and Analysis
Physical Sciences →  Engineering →  Computational Mechanics
Advanced Image and Video Retrieval Techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition

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