Paper
19 January 2009 Extraction of salient regions of interest using visual attention models
Gustavo B. Borba, Humberto R. Gamba, Oge Marques, Liam M. Mayron
Author Affiliations +
Proceedings Volume 7255, Multimedia Content Access: Algorithms and Systems III; 725508 (2009) https://doi.org/10.1117/12.807677
Event: IS&T/SPIE Electronic Imaging, 2009, San Jose, California, United States
Abstract
This paper presents a novel algorithm for extracting regions of interest (ROIs) from images in an unsupervised way. It relies on the information provided by two computational models of bottom-up visual attention, encoded in the form of the image's salient points-of-attention (POAs) and areas-of-attention (AOAs). The proposed method combines these POAs and AOAs to generate binary masks that correspond to the ROIs within the image. First, each AOA is binarized through an adapted relaxation algorithm where the histogram entropy of the AOA measurement is the stop criterion of the iterative process. The AOAs are also smoothed with a Gaussian pyramid followed by interpolation. Next, the binary representation of the AOAs, the smoothed version of the AOAs, and the POAs are converted in a mask that covers the salient ROIs of the image. The proposed ROI extraction algorithm does not impose any constraints on the number or distribution of salient regions in the input image. Qualitative and quantitative results show that the proposed method performs very well in a wide range of images, whether natural or man-made, from simple images of objects against a homogeneous background to complex cluttered scenes.
© (2009) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Gustavo B. Borba, Humberto R. Gamba, Oge Marques, and Liam M. Mayron "Extraction of salient regions of interest using visual attention models", Proc. SPIE 7255, Multimedia Content Access: Algorithms and Systems III, 725508 (19 January 2009); https://doi.org/10.1117/12.807677
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Cited by 6 scholarly publications.
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KEYWORDS
Visualization

Binary data

Image processing

Visual process modeling

RGB color model

Californium

Multiscale representation

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