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      SIMPLIcity: semantics-sensitive integrated matching for picture libraries

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          Query by image and video content: the QBIC system

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            Asymptotically optimal block quantization

            A. Gersho (1979)
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              Texture classification and segmentation using wavelet frames.

              M. Unser (1995)
              This paper describes a new approach to the characterization of texture properties at multiple scales using the wavelet transform. The analysis uses an overcomplete wavelet decomposition, which yields a description that is translation invariant. It is shown that this representation constitutes a tight frame of l(2) and that it has a fast iterative algorithm. A texture is characterized by a set of channel variances estimated at the output of the corresponding filter bank. Classification experiments with l(2) Brodatz textures indicate that the discrete wavelet frame (DWF) approach is superior to a standard (critically sampled) wavelet transform feature extraction. These results also suggest that this approach should perform better than most traditional single resolution techniques (co-occurrences, local linear transform, and the like). A detailed comparison of the classification performance of various orthogonal and biorthogonal wavelet transforms is also provided. Finally, the DWF feature extraction technique is incorporated into a simple multicomponent texture segmentation algorithm, and some illustrative examples are presented.
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                Author and article information

                Journal
                IEEE Transactions on Pattern Analysis and Machine Intelligence
                IEEE Trans. Pattern Anal. Machine Intell.
                Institute of Electrical and Electronics Engineers (IEEE)
                01628828
                Sept. 2001
                : 23
                : 9
                : 947-963
                Article
                10.1109/34.955109
                2783e12f-2c2d-4a8e-b9af-dc1269568def
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