Title :
Scale space localization, blur, and contour-based image coding
Author :
Elder, James H. ; Zucker, Steven W.
Author_Institution :
Div. of Comput. Sci., NEC Res. Inst., Princeton, NJ, USA
Abstract :
We have recently proposed a scale-adaptive algorithm for reliable edge detection and blur estimation. The algorithm produces a contour code which consists of estimates of position, brightness, contrast and blur for each edge point in the image. Here we address two questions: 1. Can scale adaptation be used to achieve precise localization of blurred edges? 2. How much of the perceptual content of an image is carried by the 1-D contour code? We report an efficient algorithm for subpixel localization, and show that local scale control allows excellent precision even for highly blurred edges. We further show how local scale control can quantitatively account for human visual acuity of blurred edge stimuli. To address the question of perceptual content, we report an algorithm for inverting the contour code to reconstruct an estimate of the original image. While reconstruction based on edge brightness and contrast alone introduces significant artifact, restitution of the local blur signal is shown to produce perceptually accurate reconstructions
Keywords :
computer vision; edge detection; image coding; blur; blur estimation; brightness; contour code; contour-based image coding; contrast; edge brightness; position; reliable edge detection; scale adaptation; scale space localization; scale-adaptive algorithm; subpixel localization; Brightness; Computer science; Detectors; Filters; Humans; Image coding; Image edge detection; Image reconstruction; National electric code; Stereo image processing;
Conference_Titel :
Computer Vision and Pattern Recognition, 1996. Proceedings CVPR '96, 1996 IEEE Computer Society Conference on
Conference_Location :
San Francisco, CA
Print_ISBN :
0-8186-7259-5
DOI :
10.1109/CVPR.1996.517049