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Markov Random Field Modeling in Image Analysis

English · Paperback / Softback

Description

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Markov random field (MRF) theory provides a basis for modeling contextual constraints in visual processing and interpretation. It enables us to develop optimal vision algorithms systematically when used with optimization principles. This book presents a comprehensive study on the use of MRFs for solving computer vision problems. The book covers the following parts essential to the subject: introduction to fundamental theories, formulations of MRF vision models, MRF parameter estimation, and optimization algorithms. Various vision models are presented in a unified framework, including image restoration and reconstruction, edge and region segmentation, texture, stereo and motion, object matching and recognition, and pose estimation. This second edition includes the most important progress in Markov modeling in image analysis in recent years such as Markov modeling of image s with "macro" patterns (e.g. the FRAME model), Markov chain Monte Carlo (MCMC) methods, reversible jump MCMC. This book is an excellent reference for researchers working in computer vision, image processing, statistical pattern recognition and applications of MRFs. It is also suitable as a text for advanced courses in these areas.

List of contents

From the contents:
- Foreword by Anil K. Jain
- Introduction
- Low Level MRF Models
- Discontinuities in MRFs
- Discontinuity-Adaptivity Model and Robust Estimation
- High Level MRF Models
- MRF Parameter Estimation
- Parameter Estimation in Optimal Object Recognition
- Minimization - Local Methods
- Minimization - Global Methods
- References
- List of Notation
- Index

Product details

Authors S. Z. Li, Stan Z. Li
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2001
 
EAN 9784431703099
ISBN 978-4-431-70309-9
No. of pages 323
Weight 490 g
Illustrations 99 figs.
Series Computer Science Workbench
Computer Science Workbench
Subject Natural sciences, medicine, IT, technology > IT, data processing > IT

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