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Wavelet-based texture retrieval using generalized Gaussian density and Kullback-Leibler distance

IEEE Transactions on Image Processing · 2002 · Vol. 11(2) · pp. 146–158
N. MinhMartin Vetterli

Abstract

We present a statistical view of the texture retrieval problem by combining the two related tasks, namely feature extraction (FE) and similarity measurement (SM), into a joint modeling and classification scheme. We show that using a consistent estimator of texture model parameters for the FE step followed by computing the Kullback-Leibler distance (KLD) between estimated models for the SM step is asymptotically optimal in term of retrieval error probability. The statistical scheme leads to a new wavelet-based texture retrieval method that is based on the accurate modeling of the marginal distribution of wavelet coefficients using generalized Gaussian density (GGD) and on the existence a closed form for the KLD between GGDs. The proposed method provides greater accuracy and flexibility in capturing texture information, while its simplified form has a close resemblance with the existing methods which uses energy distribution in the frequency domain to identify textures. Experimental results on a database of 640 texture images indicate that the new method significantly improves retrieval rates, e.g., from 65% to 77%, compared with traditional approaches, while it retains comparable levels of computational complexity.

Image Retrieval and Classification TechniquesAdvanced Image and Video Retrieval TechniquesMedical Image Segmentation TechniquesWaveletPattern recognition (psychology)Kullback–Leibler divergenceArtificial intelligenceGaussianImage textureMathematicsWavelet transformComputer scienceEstimator

Funding

  • National Science Foundation
  • École Polytechnique Fédérale de Lausanne
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
Citations
1,142
FWCI
17.51
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References
42
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References
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IEEE Transactions on Pattern Analysis and Machine Intelligence · 2000 · 6,026 citations
A theory for multiresolution signal decomposition: the wavelet representation
IEEE Transactions on Pattern Analysis and Machine Intelligence · 1989 · 20,882 citations
Texture analysis and classification with tree-structured wavelet transform
IEEE Transactions on Image Processing · 1993 · 1,332 citations
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