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Fundamentals of Digital Imaging in Medicine

Fundamentals of Digital Imaging in Medicine
Author: Roger Bourne
Publisher: Springer Science & Business Media
Total Pages: 209
Release: 2010-01-18
Genre: Medical
ISBN: 1848820879

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In general, image processing texts are intended for students of engineering and computer science, and there is little written at all on the specific requirements of medical image processing. Students of medical radiation science (Diagnostic radiography, Nuclear medicine, Radiation therapy) usually have minimal mathematical and computer science training and find the available texts incomprehensible. A text that explains the principles of image processing in minimally-mathematical language is needed for these students. Contrary to the claims of some textbook authors, the vast majority of technologists that process images do not need to understand the mathematics involved, but would nevertheless benefit from a thorough understanding of the general process.


Fundamentals of Medical Imaging

Fundamentals of Medical Imaging
Author: Paul Suetens
Publisher: Cambridge University Press
Total Pages: 265
Release: 2009-08-06
Genre: Medical
ISBN: 1139479881

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Fundamentals of Medical Imaging, second edition, is an invaluable technical introduction to each imaging modality, explaining the mathematical and physical principles and giving a clear understanding of how images are obtained and interpreted. Individual chapters cover each imaging modality – radiography, CT, MRI, nuclear medicine and ultrasound – reviewing the physics of the signal and its interaction with tissue, the image formation or reconstruction process, a discussion of image quality and equipment, clinical applications and biological effects and safety issues. Subsequent chapters review image analysis and visualization for diagnosis, treatment and surgery. New to this edition: • Appendix of questions and answers • New chapter on 3D image visualization • Advanced mathematical formulae in separate text boxes • Ancillary website containing 3D animations: www.cambridge.org/suetens • Full colour illustrations throughout Engineers, clinicians, mathematicians and physicists will find this an invaluable aid in understanding the physical principles of imaging and their clinical applications.


Digital Image Processing for Medical Applications

Digital Image Processing for Medical Applications
Author: Geoff Dougherty
Publisher: Cambridge University Press
Total Pages: 463
Release: 2009
Genre: Computers
ISBN: 0521860857

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Hands-on text for a first course aimed at end-users, focusing on concepts, practical issues and problem solving.


Fundamentals of Medical Imaging

Fundamentals of Medical Imaging
Author: Paul Suetens
Publisher: Cambridge University Press
Total Pages: 271
Release: 2017-05-11
Genre: Medical
ISBN: 1107159784

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An up-to-date, concise, profound and generously illustrated survey of the complete field of medical imaging and image computing.


Digital Imaging

Digital Imaging
Author: Jason Oakley
Publisher: Cambridge University Press
Total Pages: 228
Release: 2003
Genre: Medical
ISBN: 9780521866194

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The first book to help the modern radiographer and radiologist to understand how digital imaging, manipulation and storage systems work.


Fundamentals of Medical Imaging

Fundamentals of Medical Imaging
Author: Paul Suetens
Publisher: Cambridge University Press
Total Pages: 271
Release: 2017-05-11
Genre: Medical
ISBN: 1108211208

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This third edition provides a concise and generously illustrated survey of the complete field of medical imaging and image computing, explaining the mathematical and physical principles and giving the reader a clear understanding of how images are obtained and interpreted. Medical imaging and image computing are rapidly evolving fields, and this edition has been updated with the latest developments in the field, as well as new images and animations. An introductory chapter on digital image processing is followed by chapters on the imaging modalities: radiography, CT, MRI, nuclear medicine and ultrasound. Each chapter covers the basic physics and interaction with tissue, the image reconstruction process, image quality aspects, modern equipment, clinical applications, and biological effects and safety issues. Subsequent chapters review image computing and visualization for diagnosis and treatment. Engineers, physicists and clinicians at all levels will find this new edition an invaluable aid in understanding the principles of imaging and their clinical applications.


Fundamentals of Three-dimensional Digital Image Processing

Fundamentals of Three-dimensional Digital Image Processing
Author: Junichiro Toriwaki
Publisher: Springer Science & Business Media
Total Pages: 278
Release: 2009-04-23
Genre: Computers
ISBN: 1848001738

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This book is a detailed description of the basics of three-dimensional digital image processing. A 3D digital image (abbreviated as “3D image” below) is a digitalized representation of a 3D object or an entire 3D space, stored in a computer as a 3D array. Whereas normal digital image processing is concerned with screens that are a collection of square shapes called “pixels” and their corresponding density levels, the “image plane” in three dimensions is represented by a division into cubical graphical elements (called “voxels”) that represent corresponding density levels. Inthecontextofimageprocessing,in manycases3Dimageprocessingwill refer to the input of multiple 2D images and performing processing in order to understand the 3D space (or “scene”) that they depict. This is a result of research into how to use input from image sensors such as television cameras as a basis for learning about a 3D scene, thereby replicating the sense of vision for humans or intelligent robots, and this has been the central problem in image processing research since the 1970s. However, a completely di?erent type of image with its own new problems, the 3D digital image discussed in this book, rapidly took prominence in the 1980s, particularly in the ?eld of medical imaging. These were recordings of human bodies obtained through computed (or “computerized”) tomography (CT),imagesthatrecordednotonlytheexternal,visiblesurfaceofthesubject but also, to some degree of resolution, its internal structure. This was a type of image that no one had experienced before.


Radiology Fundamentals

Radiology Fundamentals
Author: Harjit Singh
Publisher: Springer Science & Business Media
Total Pages: 347
Release: 2011-12-02
Genre: Medical
ISBN: 1461409446

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Radiology Fundamentals is a concise introduction to the dynamic field of radiology for medical students, non-radiology house staff, physician assistants, nurse practitioners, radiology assistants, and other allied health professionals. The goal of the book is to provide readers with general examples and brief discussions of basic radiographic principles and to serve as a curriculum guide, supplementing a radiology education and providing a solid foundation for further learning. Introductory chapters provide readers with the fundamental scientific concepts underlying the medical use of imaging modalities and technology, including ultrasound, computed tomography, magnetic resonance imaging, and nuclear medicine. The main scope of the book is to present concise chapters organized by anatomic region and radiology sub-specialty that highlight the radiologist’s role in diagnosing and treating common diseases, disorders, and conditions. Highly illustrated with images and diagrams, each chapter in Radiology Fundamentals begins with learning objectives to aid readers in recognizing important points and connecting the basic radiology concepts that run throughout the text. It is the editors’ hope that this valuable, up-to-date resource will foster and further stimulate self-directed radiology learning—the process at the heart of medical education.


Digital Image Quality in Medicine

Digital Image Quality in Medicine
Author: Oleg S. Pianykh
Publisher: Springer Science & Business Media
Total Pages: 129
Release: 2013-10-21
Genre: Medical
ISBN: 3319017608

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Making a good diagnostic image is only the beginning; keeping it good and diagnostically sound is a much more difficult proposition, one that is often neglected or forgotten by clinical practitioners. With anything digital, the assumption of persistent original quality opens a Pandora’s box of medical fiascos. Poorly selected image interpolation, thoughtlessly used compression, confused image enhancement options and the like can transform a good original into a useless clutter of pixels. This book is dedicated to learning better options. Intended for physicians, clinical practitioners and applications specialists, it provides a well-rounded introduction to meaningful diagnostic image housekeeping. The book presents the most important aspects of safe digital image workflows, starting from the basic practical implications and gradually uncovering the underlying concepts and algorithms. With an easy-to-follow, down-to-earth presentation style, the text helps you to optimize your diagnostic imaging projects and connect the dots of medical informatics.​