Fundamental Mathematics And Physics Of Medical Imaging

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Fundamental Mathematics and Physics of Medical Imaging

Author : Jack Lancaster,Bruce Hasegawa
Publisher : CRC Press
Page : 322 pages
File Size : 52,8 Mb
Release : 2016-10-14
Category : Medical
ISBN : 9781498751629

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Fundamental Mathematics and Physics of Medical Imaging by Jack Lancaster,Bruce Hasegawa Pdf

Authored by a leading educator, this book teaches the fundamental mathematics and physics concepts associated with medical imaging systems. Going beyond mere description of imaging modalities, this book delves into the mechanisms of image formation and image quality common to all imaging systems: contrast mechanisms, noise, and spatial and temporal resolution, making it an important reference for medical physicists and biomedical engineering students. This is an extensively revised new edition of The Physics of Medical X-Ray Imaging by Bruce Hasegawa (Medical Physics Publishing, 1991), and includes a wide range of modalities such as X-ray CT, MRI and SPECT.

Fundamental Mathematics and Physics of Medical Imaging

Author : Jack Lancaster,Bruce Hasegawa
Publisher : CRC Press
Page : 468 pages
File Size : 42,5 Mb
Release : 2016-10-14
Category : Medical
ISBN : 9781498751643

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Fundamental Mathematics and Physics of Medical Imaging by Jack Lancaster,Bruce Hasegawa Pdf

Authored by a leading educator, this book teaches the fundamental mathematics and physics concepts associated with medical imaging systems. Going beyond mere description of imaging modalities, this book delves into the mechanisms of image formation and image quality common to all imaging systems: contrast mechanisms, noise, and spatial and temporal resolution, making it an important reference for medical physicists and biomedical engineering students. This is an extensively revised new edition of The Physics of Medical X-Ray Imaging by Bruce Hasegawa (Medical Physics Publishing, 1991), and includes a wide range of modalities such as X-ray CT, MRI and SPECT.

Mathematics and Physics of Emerging Biomedical Imaging

Author : National Research Council,Division on Engineering and Physical Sciences,Commission on Physical Sciences, Mathematics, and Applications,Committee on the Mathematics and Physics of Emerging Dynamic Biomedical Imaging
Publisher : National Academies Press
Page : 261 pages
File Size : 51,5 Mb
Release : 1996-03-28
Category : Mathematics
ISBN : 9780309053877

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Mathematics and Physics of Emerging Biomedical Imaging by National Research Council,Division on Engineering and Physical Sciences,Commission on Physical Sciences, Mathematics, and Applications,Committee on the Mathematics and Physics of Emerging Dynamic Biomedical Imaging Pdf

This cross-disciplinary book documents the key research challenges in the mathematical sciences and physics that could enable the economical development of novel biomedical imaging devices. It is hoped that the infusion of new insights from mathematical scientists and physicists will accelerate progress in imaging. Incorporating input from dozens of biomedical researchers who described what they perceived as key open problems of imaging that are amenable to attack by mathematical scientists and physicists, this book introduces the frontiers of biomedical imaging, especially the imaging of dynamic physiological functions, to the educated nonspecialist. Ten imaging modalities are covered, from the well-established (e.g., CAT scanning, MRI) to the more speculative (e.g., electrical and magnetic source imaging). For each modality, mathematics and physics research challenges are identified and a short list of suggested reading offered. Two additional chapters offer visions of the next generation of surgical and interventional techniques and of image processing. A final chapter provides an overview of mathematical issues that cut across the various modalities.

The Physics and Mathematics of MRI

Author : Richard Ansorge,Martin Graves
Publisher : Morgan & Claypool Publishers
Page : 188 pages
File Size : 48,7 Mb
Release : 2016-11-01
Category : Technology & Engineering
ISBN : 9781681740683

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The Physics and Mathematics of MRI by Richard Ansorge,Martin Graves Pdf

Magnetic Resonance Imaging is a very important clinical imaging tool. It combines different fields of physics and engineering in a uniquely complex way. MRI is also surprisingly versatile, 'pulse sequences' can be designed to yield many different types of contrast. This versatility is unique to MRI. This short book gives both an in depth account of the methods used for the operation and construction of modern MRI systems and also the principles of sequence design and many examples of applications. An important additional feature of this book is the detailed discussion of the mathematical principles used in building optimal MRI systems and for sequence design. The mathematical discussion is very suitable for undergraduates attending medical physics courses. It is also more complete than usually found in alternative books for physical scientists or more clinically orientated works.

Introduction to the Mathematics of Medical Imaging

Author : Charles L. Epstein
Publisher : SIAM
Page : 794 pages
File Size : 54,5 Mb
Release : 2008-01-01
Category : Mathematics
ISBN : 0898717795

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Introduction to the Mathematics of Medical Imaging by Charles L. Epstein Pdf

At the heart of every medical imaging technology is a sophisticated mathematical model of the measurement process and an algorithm to reconstruct an image from the measured data. This book provides a firm foundation in the mathematical tools used to model the measurements and derive the reconstruction algorithms used in most of these modalities. The text uses X-ray computed tomography (X-ray CT) as a 'pedagogical machine' to illustrate important ideas and its extensive discussion of background material makes the more advanced mathematical topics accessible to people with a less formal mathematical education. This new edition contains a chapter on magnetic resonance imaging (MRI), a revised section on the relationship between the continuum and discrete Fourier transforms, an improved description of the gridding method, and new sections on both Grangreat's formula and noise analysis in MR-imaging. Mathematical concepts are illuminated with over 200 illustrations and numerous exercises.

Fundamentals of Medical Imaging

Author : Paul Suetens
Publisher : Cambridge University Press
Page : 265 pages
File Size : 50,5 Mb
Release : 2009-08-06
Category : Medical
ISBN : 9781139479882

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Fundamentals of Medical Imaging by Paul Suetens Pdf

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.

Fundamentals of Digital Imaging in Medicine

Author : Roger Bourne
Publisher : Springer Science & Business Media
Page : 209 pages
File Size : 54,6 Mb
Release : 2010-01-18
Category : Medical
ISBN : 9781848820876

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Fundamentals of Digital Imaging in Medicine by Roger Bourne Pdf

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.

Hendee's Physics of Medical Imaging

Author : Ehsan Samei,Donald J. Peck
Publisher : John Wiley & Sons
Page : 496 pages
File Size : 45,6 Mb
Release : 2019-04-23
Category : Medical
ISBN : 9780470552209

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Hendee's Physics of Medical Imaging by Ehsan Samei,Donald J. Peck Pdf

An up-to-date edition of the authoritative text on the physics of medical imaging, written in an accessible format The extensively revised fifth edition of Hendee's Medical Imaging Physics, offers a guide to the principles, technologies, and procedures of medical imaging. Comprehensive in scope, the text contains coverage of all aspects of image formation in modern medical imaging modalities including radiography, fluoroscopy, computed tomography, nuclear imaging, magnetic resonance imaging, and ultrasound. Since the publication of the fourth edition, there have been major advances in the techniques and instrumentation used in the ever-changing field of medical imaging. The fifth edition offers a comprehensive reflection of these advances including digital projection imaging techniques, nuclear imaging technologies, new CT and MR imaging methods, and ultrasound applications. The new edition also takes a radical strategy in organization of the content, offering the fundamentals common to most imaging methods in Part I of the book, and application of those fundamentals in specific imaging modalities in Part II. These fundamentals also include notable updates and new content including radiobiology, anatomy and physiology relevant to medical imaging, imaging science, image processing, image display, and information technologies. The book makes an attempt to make complex content in accessible format with limited mathematical formulation. The book is aimed to be accessible by most professionals with lay readers interested in the subject. The book is also designed to be of utility for imaging physicians and residents, medical physics students, and medical physicists and radiologic technologists perpetrating for certification examinations. The revised fifth edition of Hendee's Medical Imaging Physics continues to offer the essential information and insights needed to understand the principles, the technologies, and procedures used in medical imaging.

The Mathematics of Medical Imaging

Author : Timothy G. Feeman
Publisher : Springer Science & Business Media
Page : 151 pages
File Size : 53,7 Mb
Release : 2010-03-10
Category : Mathematics
ISBN : 9780387927121

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The Mathematics of Medical Imaging by Timothy G. Feeman Pdf

This text explores medical imaging, one of the most significant areas of recent mathematical applications, in a concise manner accessible to undergraduate students. The author emphasizes the mathematical aspects of medical imaging, including not only the theoretical background, but also the role of approximation methods and the computer implementation of the inversion algorithms. In twenty-first century health care, CAT scans, ultrasounds, and MRIs are commonplace. Significant computational advances, along with the development, design, and improvement of the machines themselves, can only occur in conjunction with a proper understanding of the mathematics. This book is inherently interdisciplinary in nature, and therefore is appropriate for students of engineering, physics, and computer science, in addition to mathematics.

The Essential Physics of Medical Imaging Study Guide

Author : Jerrold T. Bushberg,J. Anthony Seibert
Publisher : Lippincott Williams & Wilkins
Page : 1240 pages
File Size : 45,6 Mb
Release : 2022-07-14
Category : Medical
ISBN : 9781975103279

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The Essential Physics of Medical Imaging Study Guide by Jerrold T. Bushberg,J. Anthony Seibert Pdf

Widely regarded as the cornerstone text in the field, the successful series of editions continues to follow the tradition of a clear and comprehensive presentation of the physical principles and operational aspects of medical imaging. The Essential Physics of Medical Imaging, 4th Edition, is a coherent and thorough compendium of the fundamental principles of the physics, radiation protection, and radiation biology that underlie the practice and profession of medical imaging. Distinguished scientists and educators from the University of California, Davis, provide up-to-date, readable information on the production, characteristics, and interactions of non-ionizing and ionizing radiation, magnetic fields and ultrasound used in medical imaging and the imaging modalities in which they are used, including radiography, mammography, fluoroscopy, computed tomography, magnetic resonance, ultrasound, and nuclear medicine. This vibrant, full-color text is enhanced by more than 1,000 images, charts, and graphs, including hundreds of new illustrations. This text is a must-have resource for medical imaging professionals, radiology residents who are preparing for Core Exams, and teachers and students in medical physics and biomedical engineering.

The Essential Physics of Medical Imaging

Author : Jerold T. Bushberg,J. Anthony Seiberg,Edwin M. Leidholdt, Jr.,John M. Boone
Publisher : Lippincott Williams & Wilkins
Page : 1688 pages
File Size : 53,5 Mb
Release : 2020-11-24
Category : Medical
ISBN : 9781975103248

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The Essential Physics of Medical Imaging by Jerold T. Bushberg,J. Anthony Seiberg,Edwin M. Leidholdt, Jr.,John M. Boone Pdf

Widely regarded as the cornerstone text in the field, the successful series of editions continues to follow the tradition of a clear and comprehensive presentation of the physical principles and operational aspects of medical imaging. The Essential Physics of Medical Imaging, 4th Edition, is a coherent and thorough compendium of the fundamental principles of the physics, radiation protection, and radiation biology that underlie the practice and profession of medical imaging. Distinguished scientists and educators from the University of California, Davis, provide up-to-date, readable information on the production, characteristics, and interactions of non-ionizing and ionizing radiation, magnetic fields and ultrasound used in medical imaging and the imaging modalities in which they are used, including radiography, mammography, fluoroscopy, computed tomography, magnetic resonance, ultrasound, and nuclear medicine. This vibrant, full-color text is enhanced by more than 1,000 images, charts, and graphs, including hundreds of new illustrations. This text is a must-have resource for medical imaging professionals, radiology residents who are preparing for Core Exams, and teachers and students in medical physics and biomedical engineering.

Introduction to Medical Imaging

Author : Nadine Barrie Smith,Andrew Webb
Publisher : Cambridge University Press
Page : 128 pages
File Size : 50,9 Mb
Release : 2010-11-18
Category : Technology & Engineering
ISBN : 9781139492041

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Introduction to Medical Imaging by Nadine Barrie Smith,Andrew Webb Pdf

Covering the basics of X-rays, CT, PET, nuclear medicine, ultrasound, and MRI, this textbook provides senior undergraduate and beginning graduate students with a broad introduction to medical imaging. Over 130 end-of-chapter exercises are included, in addition to solved example problems, which enable students to master the theory as well as providing them with the tools needed to solve more difficult problems. The basic theory, instrumentation and state-of-the-art techniques and applications are covered, bringing students immediately up-to-date with recent developments, such as combined computed tomography/positron emission tomography, multi-slice CT, four-dimensional ultrasound, and parallel imaging MR technology. Clinical examples provide practical applications of physics and engineering knowledge to medicine. Finally, helpful references to specialised texts, recent review articles, and relevant scientific journals are provided at the end of each chapter, making this an ideal textbook for a one-semester course in medical imaging.

The Radon Transform and Medical Imaging

Author : Peter Kuchment
Publisher : SIAM
Page : 238 pages
File Size : 52,5 Mb
Release : 2014-03-20
Category : Computers
ISBN : 9781611973280

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The Radon Transform and Medical Imaging by Peter Kuchment Pdf

This book surveys the main mathematical ideas and techniques behind some well-established imaging modalities such as X-ray CT and emission tomography, as well as a variety of newly developing coupled-physics or hybrid techniques, including thermoacoustic tomography. The Radon Transform and Medical Imaging emphasizes mathematical techniques and ideas arising across the spectrum of medical imaging modalities and explains important concepts concerning inversion, stability, incomplete data effects, the role of interior information, and other issues critical to all medical imaging methods. For nonexperts, the author provides appendices that cover background information on notation, Fourier analysis, geometric rays, and linear operators. The vast bibliography, with over 825 entries, directs readers to a wide array of additional information sources on medical imaging for further study.

The Essential Physics of Medical Imaging

Author : Jerrold T. Bushberg,J. Anthony Seibert,Edwin M. Leidholdt,John M. Boone
Publisher : Lippincott Williams & Wilkins
Page : 1049 pages
File Size : 52,8 Mb
Release : 2011-12-28
Category : Medical
ISBN : 9781451153941

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The Essential Physics of Medical Imaging by Jerrold T. Bushberg,J. Anthony Seibert,Edwin M. Leidholdt,John M. Boone Pdf

This renowned work is derived from the authors' acclaimed national review course (“Physics of Medical Imaging") at the University of California-Davis for radiology residents. The text is a guide to the fundamental principles of medical imaging physics, radiation protection and radiation biology, with complex topics presented in the clear and concise manner and style for which these authors are known. Coverage includes the production, characteristics and interactions of ionizing radiation used in medical imaging and the imaging modalities in which they are used, including radiography, mammography, fluoroscopy, computed tomography and nuclear medicine. Special attention is paid to optimizing patient dose in each of these modalities. Sections of the book address topics common to all forms of diagnostic imaging, including image quality and medical informatics as well as the non-ionizing medical imaging modalities of MRI and ultrasound. The basic science important to nuclear imaging, including the nature and production of radioactivity, internal dosimetry and radiation detection and measurement, are presented clearly and concisely. Current concepts in the fields of radiation biology and radiation protection relevant to medical imaging, and a number of helpful appendices complete this comprehensive textbook. The text is enhanced by numerous full color charts, tables, images and superb illustrations that reinforce central concepts. The book is ideal for medical imaging professionals, and teachers and students in medical physics and biomedical engineering. Radiology residents will find this text especially useful in bolstering their understanding of imaging physics and related topics prior to board exams.

Physics for Medical Imaging Applications

Author : Yves Lemoigne,Alessandra Caner,Ghita Rahal
Publisher : Springer Science & Business Media
Page : 403 pages
File Size : 52,8 Mb
Release : 2007-06-14
Category : Science
ISBN : 9781402056536

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Physics for Medical Imaging Applications by Yves Lemoigne,Alessandra Caner,Ghita Rahal Pdf

This book introduces the fundamental aspects of digital imaging and covers four main themes: ultrasound techniques and imaging applications, magnetic resonance and MPJ in hospital, digital imaging with X-rays, and emission tomography (PET and SPECT). Each topic is developed by analyzing the underlying physics principles and their implementation, quality and safety aspects, clinical performance, and recent advancements in the field.