JOURNAL ARTICLE

Edge-preserving tomographic reconstruction with nonlocal regularization

Yu DongJeffrey A. Fessler

Year: 2002 Journal:   IEEE Transactions on Medical Imaging Vol: 21 (2)Pages: 159-173   Publisher: Institute of Electrical and Electronics Engineers

Abstract

Tomographic image reconstruction using statistical methods can provide more accurate system modeling, statistical models, and physical constraints than the conventional filtered backprojection (FBP) method. Because of the ill posedness of the reconstruction problem, a roughness penalty is often imposed on the solution to control noise. To avoid smoothing of edges, which are important image attributes, various edge-preserving regularization methods have been proposed. Most of these schemes rely on information from local neighborhoods to determine the presence of edges. In this paper, we propose a cost function that incorporates nonlocal boundary information into the regularization method. We use an alternating minimization algorithm with deterministic annealing to minimize the proposed cost function, jointly estimating region boundaries and object pixel values. We apply variational techniques implemented using level-sets methods to update the boundary estimates; then, using the most recent boundary estimate, we minimize a space-variant quadratic cost function to update the image estimate. For the positron emission tomography transmission reconstruction application, we compare the bias-variance tradeoff of this method with that of a "conventional" penalized-likelihood algorithm with local Huber roughness penalty.

Keywords:
Smoothing Iterative reconstruction Regularization (linguistics) Algorithm Image restoration Mathematical optimization Mathematics Boundary (topology) Pixel Computer science Tomographic reconstruction Simulated annealing Image processing Artificial intelligence Computer vision Image (mathematics)

Metrics

149
Cited By
4.98
FWCI (Field Weighted Citation Impact)
41
Refs
0.94
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Medical Imaging Techniques and Applications
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging
Advanced X-ray and CT Imaging
Physical Sciences →  Engineering →  Biomedical Engineering
Medical Image Segmentation Techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
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