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Quantitative Magnetic Resonance Imaging

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2020
ISBN13: 9780128170571
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Elsevier Science e druk, 2020 9780128170571
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Samenvatting

Quantitative Magnetic Resonance Imaging is a ‘go-to’ reference for methods and applications of quantitative magnetic resonance imaging, with specific sections on Relaxometry, Perfusion, and Diffusion.Each section will start with an explanation of the basic techniques for mapping the tissue property in question, including a description of the challenges that arise when using these basic approaches. For properties which can be measured in multiple ways, each of these basic methods will be described in separate chapters. Following the basics, a chapter in each section presents more advanced and recently proposed techniques for quantitative tissue property mapping, with a concluding chapter on clinical applications.

The reader will learn: The basic physics behind tissue property mapping How to implement basic pulse sequences for the quantitative measurement of tissue properties The strengths and limitations to the basic and more rapid methods for mapping the magnetic relaxation properties T1, T2, and T2* The pros and cons for different approaches to mapping perfusion The methods of Diffusion-weighted imaging and how this approach can be used to generate diffusion tensor maps and more complex representations of diffusion How flow, magneto-electric tissue property, fat fraction, exchange, elastography, and temperature mapping are performed How fast imaging approaches including parallel imaging, compressed sensing, and Magnetic Resonance Fingerprinting can be used to accelerate or improve tissue property mapping schemes How tissue property mapping is used clinically in different organs

Specificaties

ISBN13:9780128170571
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Introduction</p> <p>SECTION 1 Relaxometry<br>1. Biophysical and Physiological Principles of T1 and T2<br>2. Quantitative T1 and T1r Mapping<br>3. Quantitative T2 and T2* Mapping<br>4. Multiproperty Mapping Methods<br>5. Specialized Mapping Methods in the Heart<br>6. Advances in Signal Processing for Relaxometry<br>7. Relaxometry: Applications in the Brain<br>8. Relaxometry: Applications in Musculoskeletal Systems<br>9. Relaxometry: Applications in the Body<br>10. Relaxometry: Applications in the Heart</p> <p>SECTION 2 Perfusion and Permeability<br>11. Physical and Physiological Principles of Perfusion and Permeability<br>12. Arterial Spin Labeling MRI: Basic Physics, Pulse Sequences, and Modeling<br>13. Dynamic Contrast-Enhanced MRI: Basic Physics, Pulse Sequences, and Modeling<br>14. Dynamic Susceptibility Contrast MRI: Basic Physics, Pulse Sequences, and Modeling<br>15. Applications of Quantitative Perfusion and Permeability in the Brain<br>16. Applications of Quantitative Perfusion and Permeability in the Liver<br>17. Applications of Quantitative Perfusion and Permeability in the Body</p> <p>SECTION 3 Diffusion <br>18. Physical and Physiological Principles of Diffusion<br>19. Acquisition of Diffusion MRI Data<br>20. Modeling Fiber Orientations Using Diffusion MRI<br>21. Diffusion MRI Fiber Tractography<br>22. Measuring Microstructural Features Using Diffusion MRI<br>23. Diffusion MRI: Applications in the Brain<br>24. Diffusion MRI: Applications Outside the Brain</p> <p>SECTION 4 Fat and Iron Quantification<br>25. Physical and Physiological Properties of Fat<br>26. Physical and Physiological Properties of Iron<br>27. Fat Quantification Techniques<br>28. Applications of Fat Mapping<br>29. Iron Mapping Techniques and Applications</p> <p>SECTION 5 Quantification of Other MRI-Accessible Tissue Properties <br>30. Electrical Properties Mapping<br>31. Quantitative Susceptibility Mapping<br>32. Magnetization Transfer<br>33. Chemical Exchange Mapping<br>34. MR Thermometry<br>35. Motion Encoded MRI and Elastography<br>36. Flow Quantification with MRI<br>37. Hyperpolarized Magnetic Resonance Spectroscopy and Imaging</p>

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