Literature DB >> 20442050

A PDE formalization of Retinex theory.

Jean Michel Morel, Ana Belén Petro, Catalina Sbert.   

Abstract

In 1964 Edwin H. Land formulated the Retinex theory, the first attempt to simulate and explain how the human visual system perceives color. His theory and an extension, the "reset Retinex" were further formalized by Land and McCann. Several Retinex algorithms have been developed ever since. These color constancy algorithms modify the RGB values at each pixel to give an estimate of the color sensation without a priori information on the illumination. Unfortunately, the Retinex Land-McCann original algorithm is both complex and not fully specified. Indeed, this algorithm computes at each pixel an average of a very large set of paths on the image. For this reason, Retinex has received several interpretations and implementations which, among other aims, attempt to tune down its excessive complexity. In this paper, it is proved that if the paths are assumed to be symmetric random walks, the Retinex solutions satisfy a discrete screened Poisson equation. This formalization yields an exact and fast implementation using only two FFTs. Several experiments on color images illustrate the effectiveness of the Retinex original theory.

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Year:  2010        PMID: 20442050     DOI: 10.1109/TIP.2010.2049239

Source DB:  PubMed          Journal:  IEEE Trans Image Process        ISSN: 1057-7149            Impact factor:   10.856


  2 in total

1.  Automated Cell Detection and Morphometry on Growth Plate Images of Mouse Bone.

Authors:  Maria-Grazia Ascenzi; Xia Du; James I Harding; Emily N Beylerian; Brian M de Silva; Ben J Gross; Hannah K Kastein; Weiguang Wang; Karen M Lyons; Hayden Schaeffer
Journal:  Appl Math (Irvine)       Date:  2014-10

2.  Realistic Image Rendition Using a Variable Exponent Functional Model for Retinex.

Authors:  Zeyang Dou; Kun Gao; Bin Zhang; Xinyan Yu; Lu Han; Zhenyu Zhu
Journal:  Sensors (Basel)       Date:  2016-06-07       Impact factor: 3.576

  2 in total

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