Fundamentals of MRI
An Interactive Learning Approach
Seiten
2008
Crc Press Inc (Verlag)
978-1-58488-901-4 (ISBN)
Crc Press Inc (Verlag)
978-1-58488-901-4 (ISBN)
Covering all the basics, this self-contained introduction explores the physical principles that underpin the technique of MRI. It links key principles to the main components of an MR system, such as radio frequency coils and gradient coils, and outlines the steps of spatial localization: slice selection, frequency encoding, and phase encoding. T
Fundamentals of MRI: An Interactive Learning Approach explores the physical principles that underpin the technique of magnetic resonance imaging (MRI).
After covering background mathematics, physics, and digital imaging, the book presents fundamental physical principles, including magnetization and rotating reference frame. It describes how relaxation mechanisms help predict tissue contrast and how an MR signal is localized to a selected slice through the body. The text then focuses on frequency and phase encoding. It also explores the spin-echo sequence, its scan parameters, and additional imaging sequences, such as inversion recovery and gradient echo.
The authors enhance the learning experience with practical materials. Along with questions, exercises, and solutions, they include ten interactive programs on the accompanying downloadable resources. These programs not only allow concepts to be clearly demonstrated and further developed, but also provide an opportunity to engage in the learning process through guided exercises.
By providing a solid, hands-on foundation in the physics of MRI, this textbook helps students gain confidence with core concepts before they move on to further study or practical training.
Fundamentals of MRI: An Interactive Learning Approach explores the physical principles that underpin the technique of magnetic resonance imaging (MRI).
After covering background mathematics, physics, and digital imaging, the book presents fundamental physical principles, including magnetization and rotating reference frame. It describes how relaxation mechanisms help predict tissue contrast and how an MR signal is localized to a selected slice through the body. The text then focuses on frequency and phase encoding. It also explores the spin-echo sequence, its scan parameters, and additional imaging sequences, such as inversion recovery and gradient echo.
The authors enhance the learning experience with practical materials. Along with questions, exercises, and solutions, they include ten interactive programs on the accompanying downloadable resources. These programs not only allow concepts to be clearly demonstrated and further developed, but also provide an opportunity to engage in the learning process through guided exercises.
By providing a solid, hands-on foundation in the physics of MRI, this textbook helps students gain confidence with core concepts before they move on to further study or practical training.
Elizabeth Berry, Andrew J. Bulpitt
Introduction. Mathematics, Physics, and Imaging for MRI. Basic Physical Principles. Relaxation Mechanisms. Slice Selection. Frequency Encoding. Phase Encoding. The Spin-Echo Imaging Sequence. Scan Parameters for the Spin-Echo Imaging Sequence. Further Imaging Sequences. Multiple-Choice Questions. Index.
Erscheint lt. Verlag | 7.1.2009 |
---|---|
Reihe/Serie | Series in Medical Physics and Biomedical Engineering |
Zusatzinfo | 25 Tables, black and white; 304 Illustrations, black and white |
Verlagsort | Bosa Roca |
Sprache | englisch |
Maße | 156 x 234 mm |
Gewicht | 589 g |
Themenwelt | Medizinische Fachgebiete ► Radiologie / Bildgebende Verfahren ► Kernspintomographie (MRT) |
Medizin / Pharmazie ► Physiotherapie / Ergotherapie ► Orthopädie | |
Naturwissenschaften ► Biologie | |
Technik ► Medizintechnik | |
Technik ► Umwelttechnik / Biotechnologie | |
ISBN-10 | 1-58488-901-2 / 1584889012 |
ISBN-13 | 978-1-58488-901-4 / 9781584889014 |
Zustand | Neuware |
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