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Graphcut textures: Image and video synthesis using graph cuts (2003)

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by Vivek Kwatra , Arno Schödl , Irfan Essa , Greg Turk , Aaron Bobick
Venue:ACM Transactions on Graphics, SIGGRAPH 2003
Citations:490 - 9 self
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BibTeX

@ARTICLE{Kwatra03graphcuttextures:,
    author = {Vivek Kwatra and Arno Schödl and Irfan Essa and Greg Turk and Aaron Bobick},
    title = {Graphcut textures: Image and video synthesis using graph cuts},
    journal = {ACM Transactions on Graphics, SIGGRAPH 2003},
    year = {2003},
    pages = {277--286}
}

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Abstract

This banner was generated by merging the source images in Figure 6 using our interactive texture merging technique. In this paper we introduce a new algorithm for image and video texture synthesis. In our approach, patch regions from a sample image or video are transformed and copied to the output and then stitched together along optimal seams to generate a new (and typically larger) output. In contrast to other techniques, the size of the patch is not chosen a-priori, but instead a graph cut technique is used to determine the optimal patch region for any given offset between the input and output texture. Unlike dynamic programming, our graph cut technique for seam optimization is applicable in any dimension. We specifically explore it in 2D and 3D to perform video texture synthesis in addition to regular image synthesis. We present approximative offset search techniques that work well in conjunction with the presented patch size optimization. We show results for synthesizing regular, random, and natural images and videos. We also demonstrate how this method can be used to interactively merge different images to generate new scenes.

Keyphrases

graphcut texture    graph cut    video synthesis    graph cut technique    video texture synthesis    new algorithm    regular image synthesis    dynamic programming    seam optimization    different image    new scene    output texture    natural image    source image    interactive texture merging technique    optimal patch region    optimal seam    presented patch size optimization    search technique    sample image   

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