An Introduction To Mri For Medical Physicists And Engineers


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An Introduction to MRI for Medical Physicists and Engineers


An Introduction to MRI for Medical Physicists and Engineers

Author: Anthony B. Wolbarst

language: en

Publisher:

Release Date: 2019


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This introduction to the science and technology of MRI has been written at the beginning graduate level primarily for professional medical physicists and engineers in training. More advanced topics - like Fourier analysis, k-space, and statistical distributions - are introduced as they are needed.

Introduction to Medical Imaging


Introduction to Medical Imaging

Author: Nadine Barrie Smith

language: en

Publisher: Cambridge University Press

Release Date: 2010-11-18


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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.

Fundamental Mathematics and Physics of Medical Imaging


Fundamental Mathematics and Physics of Medical Imaging

Author: Jack Lancaster

language: en

Publisher: CRC Press

Release Date: 2016-10-14


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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.