Showing posts with label ImageProcessing. Show all posts
Showing posts with label ImageProcessing. Show all posts

Mathematical Problems in Image Processing: Partial Differential Equations and the Calculus of Variations (Applied Mathematical Sciences)




Mathematical Problems in Image Processing: Partial Differential Equations and the Calculus of Variations (Applied Mathematical Sciences)
~
Aubert G., Kornprobst P.




Review

From the reviews:

(Selected by the author): "Mathematical Problems in Image Processing is a major, elegant, and unique contribution to the applied mathematics literature, oriented toward applications in image processing and computer vision.... Researchers and practitioners working in the field will benefit by adding this book to their personal collection. Students and instructors will benefit by using this book as a graduate course textbook."

Luminita Vese
University of California at Los Angeles

(Selected by the author): "The Mathematician -- and he doesn't need to be a 'die-hard' applied mathematician -- will love it because there are all these spectacular applications of nontrivial mathematical techniques and he can even find some open theoretical questions. The numerical analyst will discover many challenging problems and implementations. The image processor will be an eager reader because the book provides all the mathematical elements, including most of the proofs.... Both content and typography are a delight. I can recommend the book warmly for theoretical and applied researchers."

Adhemar Bultheel

MATHEMATICAL REVIEWS

"The authors have substantially contributed to many aspects of the subject…The level of the book is advanced, and the exposition very clear, developed in depth, and to some extent self-contained. The proofs of the main theorems are usually given in detail; when necessary there is also a precise reference to the ample literature on the specific topic. This book will certainly interest both mathematicians (some interesting, still open theoretical questions there are highlighted) and researchers in computer vision…The books substantial and up-to-date body for reference is a detailed guide to the literature on the many aspects of image processing."

G. Aubert and P. Kornprobst

Mathematical Problems in Image Processing

Partial Differential Equations and the Calculus of Variations

"This book is devoted to a detailed presentation of several aspects of mathematical problems in image processing . . . The authors have substantially contributed to many aspects of their subject . . . The level of the book is advanced, and the to some extent self-contained . . . This book will certainly interest both mathematicians (some interesting, still open theoretical questions here are highlighted) and researchers in computer vision."—MATHEMATICAL REVIEWS

From the reviews of the second edition:

"The book is devoted to the mathematical treatment of several problems in image processing, with particular attention to the methods involving partial differential equations and variational analysis … . This second edition has the same goals, and the spirit in which the volume is written will again let it be a reference for both the mathematical and the computer vision communities. Besides the natural updating of the existing chapters, this second edition presents some new material … ." (Giuseppe Buttazzo, Zentralblatt MATH, Vol. 1110 (12), 2007)


Product Description

Partial differential equations (PDEs) and variational methods were introduced into image processing about fifteen years ago. Since then, intensive research has been carried out. The goals of this book are to present a variety of image analysis applications, the precise mathematics involved and how to discretize them.

Thus, this book is intended for two audiences. The first is the mathematical community by showing the contribution of mathematics to this domain. It is also the occasion to highlight some unsolved theoretical questions. The second is the computer vision community by presenting a clear, self-contained and global overview of the mathematics involved in image processing problems. This work will serve as a useful source of reference and inspiration for fellow researchers in Applied Mathematics and Computer Vision, as well as being a basis for advanced courses within these fields.

During the four years since the publication of the first edition, there has been substantial progress in the range of image processing applications covered by the PDE framework. The main goals of the second edition are to update the first edition by giving a coherent account of some of the recent challenging applications, and to update the existing material. In addition, this book provides the reader with the opportunity to make his own simulations with a minimal effort. To this end, programming tools are made available, which will allow the reader to implement and test easily some classical approaches.
Product Details

* Hardcover: 377 pages
* Publisher: Springer; 2nd edition (August 1, 2006)
* Language: English
* ISBN-10: 0387322000
* ISBN-13: 978-0387322001

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Mathematical Methods in Time Series Analysis and Digital Image Processing (Understanding Complex Systems)




Mathematical Methods in Time Series Analysis and Digital Image Processing (Understanding Complex Systems)
~ Dahlhaus R., et al. (eds.)





Details
# Hardcover: 294 pages
# Publisher: Springer; 1 edition (February 25, 2008)
# Language: English
# ISBN-10: 3540756310
# ISBN-13: 978-3540756316



Description
The aim of this volume is to bring together research directions in theoretical signal and imaging processing developed rather independently in electrical engineering, theoretical physics, mathematics and the computer sciences.

In particular, mathematically justified algorithms and methods, the mathematical analysis of these algorithms, and methods as well as the investigation of connections between methods from time series analysis and image processing are reviewed. An interdisciplinary comparison of these methods, drawing upon common sets of test problems from medicine and geophysical/environmental sciences, is also addressed.

This volume coherently summarizes work carried out in the field of theoretical signal and image processing. It focuses on non-linear and non-parametric models for time series as well as on adaptive methods in image processing.


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Bézier and Splines in Image Processing and Machine Vision (Hardcover)




Bézier and Splines in Image Processing and Machine Vision (Hardcover)
~ Biswas S., Lovell B.





Details
# Hardcover: 246 pages
# Publisher: Springer; 1 edition (December 11, 2007)
# Language: English
# ISBN-10: 1846289564
# ISBN-13: 978-1846289569



Description
Digital image processing and machine vision have grown considerably during the last few decades. Of the various techniques, developed so far, splines play a significant role in many of them. This book deals with various image processing and machine vision problems efficiently with splines and includes: the significance of Bernstein Polynomial in splines, detailed coverage of Beta-splines applications which are relatively new, Splines in motion tracking, various deformative models and their uses.

Finally the book covers wavelet splines which are efficient and effective in different image applications.


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Digital Image Processing: Principles and Applications




Digital Image Processing: Principles and Applications
~ Acharya T., Ray A.





Details
# Hardcover: 448 pages
# Publisher: Wiley-Interscience (September 8, 2005)
# Language: English
# ISBN-10: 0471719986
# ISBN-13: 978-0471719984



Description
Image processing-from basics to advanced applications

Learn how to master image processing and compression with this outstanding state-of-the-art reference. From fundamentals to sophisticated applications, Image Processing: Principles and Applications covers multiple topics and provides a fresh perspective on future directions and innovations in the field, including:
* Image transformation techniques, including wavelet transformation and developments
* Image enhancement and restoration, including noise modeling and filtering
* Segmentation schemes, and classification and recognition of objects
* Texture and shape analysis techniques
* Fuzzy set theoretical approaches in image processing, neural networks, etc.
* Content-based image retrieval and image mining
* Biomedical image analysis and interpretation, including biometric algorithms such as face recognition and signature verification
* Remotely sensed images and their applications
* Principles and applications of dynamic scene analysis and moving object detection and tracking
* Fundamentals of image compression, including the JPEG standard and the new JPEG2000 standard

Additional features include problems and solutions with each chapter to help you apply the theory and techniques, as well as bibliographies for researching specialized topics. With its extensive use of examples and illustrative figures, this is a superior title for students and practitioners in computer science, wireless and multimedia communications, and engineering.



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Mathematical Problems in Image Processing: Partial Differential Equations and the Calculus of Variations (Applied Mathematical Sciences) (Hardcover)




Mathematical Problems in Image Processing: Partial Differential Equations and the Calculus of Variations (Applied Mathematical Sciences) (Hardcover)
~ Aubert G., Kornprobst P.





Details
# Hardcover: 377 pages
# Publisher: Springer; 2nd edition (August 1, 2006)
# Language: English
# ISBN-10: 0387322000
# ISBN-13: 978-0387322001



Description
Partial differential equations (PDEs) and variational methods were introduced into image processing about fifteen years ago. Since then, intensive research has been carried out. The goals of this book are to present a variety of image analysis applications, the precise mathematics involved and how to discretize them.

Thus, this book is intended for two audiences. The first is the mathematical community by showing the contribution of mathematics to this domain. It is also the occasion to highlight some unsolved theoretical questions. The second is the computer vision community by presenting a clear, self-contained and global overview of the mathematics involved in image processing problems. This work will serve as a useful source of reference and inspiration for fellow researchers in Applied Mathematics and Computer Vision, as well as being a basis for advanced courses within these fields.

During the four years since the publication of the first edition, there has been substantial progress in the range of image processing applications covered by the PDE framework. The main goals of the second edition are to update the first edition by giving a coherent account of some of the recent challenging applications, and to update the existing material. In addition, this book provides the reader with the opportunity to make his own simulations with a minimal effort. To this end, programming tools are made available, which will allow the reader to implement and test easily some classical approaches.



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An Introduction to Mathematics of Emerging Biomedical Imaging (Mathématiques et Applications)




An Introduction to Mathematics of Emerging Biomedical Imaging (Mathématiques et Applications)
~ Ammari H.





Details
# Paperback: 198 pages
# Publisher: Springer; 1 edition (June 2, 2008)
# Language: English
# ISBN-10: 3540795529
# ISBN-13: 978-3540795520



Description
Biomedical imaging is a fascinating research area to applied mathematicians. Challenging imaging problems arise and they often trigger the investigation of fundamental problems in various branches of mathematics. This is the first book to highlight the most recent mathematical developments in emerging biomedical imaging techniques. The main focus is on emerging multi-physics and multi-scales imaging approaches. For such promising techniques, it provides the basic mathematical concepts and tools for image reconstruction. Further improvements in these exciting imaging techniques require continued research in the mathematical sciences, a field that has contributed greatly to biomedical imaging and will continue to do so. The volume is suitable for a graduate-level course in applied mathematics and helps prepare the reader for a deeper understanding of research areas in biomedical imaging.



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Tensors in Image Processing and Computer Vision (Advances in Pattern Recognition) (Hardcover)




Tensors in Image Processing and Computer Vision (Advances in Pattern Recognition) (Hardcover)
~ Aja-Fernandez S., et al.





Details
# Hardcover: 470 pages
# Publisher: Springer; 1 edition (July 14, 2009)
# Language: English
# ISBN-10: 1848822987
# ISBN-13: 978-1848822986



Description
Tensor signal processing is an emerging field with important applications to computer vision and image processing.

This book presents the state of the art in this new branch of signal processing, offering a great deal of research and discussions by leading experts in the area. The wide-ranging volume offers an overview into cutting-edge research into the newest tensor processing techniques and their application to different domains related to computer vision and image processing.

This comprehensive text will prove to be an invaluable reference and resource for researchers, practitioners and advanced students working in the area of computer vision and image processing.



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Multispectral Image Processing and Pattern Recognition (Series in Machine Perception and Artificial Intelligence, 44) (v. 44)

Multispectral Image Processing and Pattern Recognition (Series in Machine Perception and Artificial Intelligence, 44) (v. 44)
by: Jun Shen, P. S. P. Wang, Tianxu Zhang, International Symposium on Multispectral Image Processing, International Symposium on Multispectral Image Processing, Society of Photo-Optical Instrumentation Engineers




Details
* Publisher: World Scientific Publishing Company
* Number Of Pages: 130
* Publication Date: 2001-06
* ISBN-10 / ASIN: 9810245939
* ISBN-13 / EAN: 9789810245931


Description
A study of multispectral image processing and pattern recognition. It covers: geometric and orthogonal moments; minimum description length method for facet matching; an integrated vision system for ALV navigation; fuzzy Bayesian networks; and more.

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