Safety and Biological Effects in MRI

Safety and Biological Effects in MRI
Author: Devashish Shrivastava,J. Thomas Vaughan
Publsiher: John Wiley & Sons
Total Pages: 520
Release: 2020-10-30
Genre: Medical
ISBN: 9781118821299

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In vivo magnetic resonance imaging (MRI) has evolved into a versatile and critical, if not ‘gold standard’, imaging tool with applications ranging from the physical sciences to the clinical ‘-ology’. In addition, there is a vast amount of accumulated but unpublished inside knowledge on what is needed to perform a safe, in vivo MRI. The goal of this comprehensive text, written by an outstanding group of world experts, is to present information about the effect of the MRI environment on the human body, and tools and methods to quantify such effects. By presenting such information all in one place, the expectation is that this book will help everyone interested in the Safety and Biological Effects in MRI find relevant information relatively quickly and know where we stand as a community. The information is expected to improve patient safety in the MR scanners of today, and facilitate developing faster, more powerful, yet safer MR scanners of tomorrow. This book is arranged in three sections. The first, named ‘Static and Gradient Fields’ (Chapters 1-9), presents the effects of static magnetic field and the gradients of magnetic field, in time and space, on the human body. The second section, named ‘Radiofrequency Fields’ (Chapters 10-30), presents ways to quantify radiofrequency (RF) field induced heating in patients undergoing MRI. The effect of the three fields of MRI environment (i.e. Static Magnetic Field, Time-varying Gradient Magnetic Field, and RF Field) on medical devices, that may be carried into the environment with patients, is also included. Finally, the third section, named ‘Engineering’ (chapters 31-35), presents the basic background engineering information regarding the equipment (i.e. superconducting magnets, gradient coils, and RF coils) that produce the Static Magnetic Field, Time-varying Gradient Magnetic Field, and RF Field. The book is intended for undergraduate and post-graduate students, engineers, physicists, biologists, clinicians, MR technologists, other healthcare professionals, and everyone else who might be interested in looking into the role of MRI environment on patient safety, as well as those just wishing to update their knowledge of the state of MRI safety. Those, who are learning about MRI or training in magnetic resonance in medicine, will find the book a useful compendium of the current state of the art of the field.

Biological Effects and Safety Aspects of Nuclear Magnetic Resonance Imaging and Spectroscopy

Biological Effects and Safety Aspects of Nuclear Magnetic Resonance Imaging and Spectroscopy
Author: Richard L. Magin,Robert P. Liburdy,Bertil Persson
Publsiher: Unknown
Total Pages: 422
Release: 1992
Genre: Medical
ISBN: UVA:X002069254

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This volume presents the proceedings of a New York Academy of Sciences conference, held in May 1991. It represents an up-to-date assessment of the biological effects and safety hazards associated with magnetic resonance imaging (MRI) and spectroscopy. The interaction of electric and magnetic fields present within the surrounding MRI systems with cells, organs and whole animals is carefully analysed. Experts in medicine, medical physics and bioelectromagnetics provide a review of the hazards known to occur in existing MRI systems and a framework for the study of new problems that may emerge with the development of advanced MRI systems.

Safety and Biological Effects in MRI

Safety and Biological Effects in MRI
Author: Devashish Shrivastava,J. Thomas Vaughan
Publsiher: Wiley
Total Pages: 0
Release: 2021-02-08
Genre: Medical
ISBN: 1118821300

Download Safety and Biological Effects in MRI Book in PDF, Epub and Kindle

In vivo magnetic resonance imaging (MRI) has evolved into a versatile and critical, if not ‘gold standard’, imaging tool with applications ranging from the physical sciences to the clinical ‘-ology’. In addition, there is a vast amount of accumulated but unpublished inside knowledge on what is needed to perform a safe, in vivo MRI. The goal of this comprehensive text, written by an outstanding group of world experts, is to present information about the effect of the MRI environment on the human body, and tools and methods to quantify such effects. By presenting such information all in one place, the expectation is that this book will help everyone interested in the Safety and Biological Effects in MRI find relevant information relatively quickly and know where we stand as a community. The information is expected to improve patient safety in the MR scanners of today, and facilitate developing faster, more powerful, yet safer MR scanners of tomorrow. This book is arranged in three sections. The first, named ‘Static and Gradient Fields’ (Chapters 1-9), presents the effects of static magnetic field and the gradients of magnetic field, in time and space, on the human body. The second section, named ‘Radiofrequency Fields’ (Chapters 10-30), presents ways to quantify radiofrequency (RF) field induced heating in patients undergoing MRI. The effect of the three fields of MRI environment (i.e. Static Magnetic Field, Time-varying Gradient Magnetic Field, and RF Field) on medical devices, that may be carried into the environment with patients, is also included. Finally, the third section, named ‘Engineering’ (chapters 31-35), presents the basic background engineering information regarding the equipment (i.e. superconducting magnets, gradient coils, and RF coils) that produce the Static Magnetic Field, Time-varying Gradient Magnetic Field, and RF Field. The book is intended for undergraduate and post-graduate students, engineers, physicists, biologists, clinicians, MR technologists, other healthcare professionals, and everyone else who might be interested in looking into the role of MRI environment on patient safety, as well as those just wishing to update their knowledge of the state of MRI safety. Those, who are learning about MRI or training in magnetic resonance in medicine, will find the book a useful compendium of the current state of the art of the field.

Magnetic Resonance

Magnetic Resonance
Author: Frank G. Shellock,Emanuel Kanal
Publsiher: Lippincott Williams & Wilkins
Total Pages: 368
Release: 1996
Genre: Magnetic resonance imaging
ISBN: UOM:39015039120905

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University of Southern California, Los Angeles. Handbook on the bioeffects of MR and its safety issues, for radiologists. Discusses potential risks to patients and professionals. Offers guidelines for daily practice. Softcover. DNLM: Magnetic Resonance Imaging - adverse effects.

Electromagnetics in Magnetic Resonance Imaging

Electromagnetics in Magnetic Resonance Imaging
Author: Christopher M. Collins
Publsiher: Morgan & Claypool Publishers
Total Pages: 82
Release: 2016-03-01
Genre: Medical
ISBN: 9781681740836

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In the past few decades, Magnetic Resonance Imaging (MRI) has become an indispensable tool in modern medicine, with MRI systems now available at every major hospital in the developed world. But for all its utility and prevalence, it is much less commonly understood and less readily explained than other common medical imaging techniques. Unlike optical, ultrasonic, X-ray (including CT), and nuclear medicine-based imaging, MRI does not rely primarily on simple transmission and/or reflection of energy, and the highest achievable resolution in MRI is orders of magnitude smaller that the smallest wavelength involved. In this book, MRI will be explained with emphasis on the magnetic fields required, their generation, their concomitant electric fields, the various interactions of all these fields with the subject being imaged, and the implications of these interactions to image quality and patient safety. Classical electromagnetics will be used to describe aspects from the fundamental phenomenon of nuclear precession through signal detection and MRI safety. Simple explanations and Illustrations combined with pertinent equations are designed to help the reader rapidly gain a fundamental understanding and an appreciation of this technology as it is used today, as well as ongoing advances that will increase its value in the future. Numerous references are included to facilitate further study with an emphasis on areas most directly related to electromagnetics.

Radiation Biology of Medical Imaging

Radiation Biology of Medical Imaging
Author: Charles A. Kelsey,Philip H. Heintz,Gregory D. Chambers,Daniel J. Sandoval,Natalie L. Adolphi,Kimberly S. Paffett
Publsiher: John Wiley & Sons
Total Pages: 341
Release: 2014-02-10
Genre: Medical
ISBN: 9780470551776

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This book provides a thorough yet concise introduction to quantitative radiobiology and radiation physics, particularly the practical and medical application. Beginning with a discussion of the basic science of radiobiology, the book explains the fast processes that initiate damage in irradiated tissue and the kinetic patterns in which such damage is expressed at the cellular level. The final section is presented in a highly practical handbook style and offers application-based discussions in radiation oncology, fractionated radiotherapy, and protracted radiation among others. The text is also supplemented by a Web site.

MRI from Picture to Proton

MRI from Picture to Proton
Author: Donald W. McRobbie,Elizabeth A. Moore,Martin J. Graves,Martin R. Prince
Publsiher: Cambridge University Press
Total Pages: 405
Release: 2017-04-13
Genre: Medical
ISBN: 9781107643239

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This new edition includes the latest on quantitative MR, safety, multi-band excitation, Dixon imaging and MR elastography.

Essentials of MRI Safety

Essentials of MRI Safety
Author: Donald W. McRobbie
Publsiher: John Wiley & Sons
Total Pages: 405
Release: 2020-07-13
Genre: Medical
ISBN: 9781119557173

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Essentials of MRI Safety is a comprehensive guide that enables practitioners to recognise and assess safety risks and follow appropriate and effective safety procedures in clinical practice. The text covers all the vital aspects of clinical MRI safety, including the bio-effects of MRI, magnet safety, occupational exposure, scanning passive and active implants, MRI suite design, institutional governance, and more. Complex equations and models are stripped back to present the foundations of theory and physics necessary to understand each topic, from the basic laws of magnetism to fringe field spatial gradient maps of common MRI scanners. Written by an internationally recognised MRI author, educator, and MRI safety expert, this important textbook: Reflects the most current research, guidelines, and MRI safety information Explains procedures for scanning pregnant women, managing MRI noise exposure, and handling emergency situations Prepares candidates for the American Board of MR Safety exam and other professional certifications Aligns with MRI safety roles such as MR Medical Director (MRMD), MR Safety Officer (MRSO) and MR Safety Expert (MRSE) Contains numerous illustrations, figures, self-assessment tests, key references, and extensive appendices Essentials of MRI Safety is an indispensable text for all radiographers and radiologists, as well as physicists, engineers, and researchers with an interest in MRI.