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Magnetic resonance imaging: Physical principles

Magnetic resonance imaging: Physical principles

Magnetic resonance imaging: Physical principles and sequence design by E. Mark Haacke, Michael R. Thompson, Ramesh Venkatesan, Robert W. Brown

Magnetic resonance imaging: Physical principles and sequence design



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Magnetic resonance imaging: Physical principles and sequence design E. Mark Haacke, Michael R. Thompson, Ramesh Venkatesan, Robert W. Brown ebook
ISBN: 0471351288, 9780471351283
Format: djvu
Page: 937
Publisher: Wiley


Citation: Mallett CL, Foster PJ (2011) Optimization of the Balanced Steady State Free Precession (bSSFP) Pulse Sequence for Magnetic Resonance Imaging of the Mouse Prostate at 3T. Scheffler K, Lehnhardt S (2003) Principles and applications of balanced SSFP techniques. Affiliations: Duke Cardiovascular Magnetic Resonance Center, Duke University Medical Center, Durham, North Carolina, United States of America, Department of Medicine, Duke University Medical Center, Durham, North Carolina, United Image contrast in clinical MRI is often determined by differences in tissue water proton relaxation behavior. (1999) Magnetic Resonance Imaging. Haacke E.M., Brown R.W., Thompson M.R., and Venkatesen R. I have found that MRI Physical Principles and Sequence Design has occasionally been the only book which covers a particular topic in sufficient depth, when studying the basics of MRI at an advanced level, if you get my meaning. €We are extending the reach of MRI technology,” said Sean Barrett, a professor of physics and applied physics at Yale and the principal investigator of research published the week of March 19 in the journal PNAS. The sequence was repeated with step changes in spinlock pulse duration (from 5 msec to approximately 4-fold T2). (1999) Magnetic Resonance Imaging: Physical Principles and Sequence Design. By targeting phosphorus atoms and applying a complicated sequence of radio wave pulses, researchers were able to create a MRI technique that displays 3D images of hard and soft solids based on signals emitted by their phosphorus content. Furthermore, pathological findings such as hemorrhages, edema, and physical injuries can be graphically depicted [4-6]. Background First-pass magnetic resonance (MR) myocardial perfusion imaging can quantify MBF, but images are of low signal at conventional magnetic field strength due to the need for rapid acquisition. They were, however, identical in terms of the basic principles of imaging (i.e., they were both saturation recovery prepared gradient echo sequences with identical contrast concentration and injection rate). This book presents a comprehensive treatment of electromagnetic analysis and design of three critical devices for an MRI system - the magnet, gradient coils, and radiofrequency (RF) coils. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. Methods A pig model was used to ..

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