4.6 Article

A panorama on multiscale geometric representations, intertwining spatial, directional and frequency selectivity

Journal

SIGNAL PROCESSING
Volume 91, Issue 12, Pages 2699-2730

Publisher

ELSEVIER
DOI: 10.1016/j.sigpro.2011.04.025

Keywords

Review; Multiscale; Geometric representations; Oriented decompositions; Scale-space; Wavelets; Atoms; Sparsity; Redundancy; Bases; Frames; Edges; Textures; Image processing; Haar wavelet; Non-Euclidean wavelets

Funding

  1. Belgian National Science Foundation (F.R.S.-FNRS)

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The richness of natural images makes the quest for optimal representations in image processing and computer vision challenging. The latter observation has not prevented the design of image representations, which trade off between efficiency and complexity, while achieving accurate rendering of smooth regions as well as reproducing faithful contours and textures. The most recent ones, proposed in the past decade, share a hybrid heritage highlighting the multiscale and oriented nature of edges and patterns in images. This paper presents a panorama of the aforementioned literature on decompositions in multiscale, multi-orientation bases or dictionaries. They typically exhibit redundancy to improve sparsity in the transformed domain and sometimes its invariance with respect to simple geometric deformations (translation, rotation). Oriented multiscale dictionaries extend traditional wavelet processing and may offer rotation invariance. Highly redundant dictionaries require specific algorithms to simplify the search for an efficient (sparse) representation. We also discuss the extension of multiscale geometric decompositions to non-Euclidean domains such as the sphere or arbitrary meshed surfaces. The etymology of panorama suggests an overview, based on a choice of partially overlapping pictures. We hope that this paper will contribute to the appreciation and apprehension of a stream of current research directions in image understanding. (C) 2011 Elsevier B.V. All rights reserved.

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