Handbook of MRI Pulse Sequences
Autor Xiaohong Joe Zhou, Kevin F. King, William Grissom, Leslie Ying, Matt A. Bernsteinen Limba Engleză Hardback – noi 2025
This book is among the most important medical imaging techniques available today. Each of these scanners is capable of running many different "pulse sequences." These sequences are governed by physics and engineering principles and implemented by software programs that control the MRI hardware.
- Explains pulse sequences, their components, and the associated image reconstruction methods commonly used in MRI
- Describes several system measurement tools most relevant to pulse sequence developers and users
- Provides self-contained sections for individual techniques
- Includes both non-mathematical and mathematical descriptions
- Contains numerous figures, tables, references, and worked example problems
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Specificații
ISBN-13: 9780323915977
ISBN-10: 0323915973
Pagini: 800
Dimensiuni: 152 x 229 mm
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 0323915973
Pagini: 800
Dimensiuni: 152 x 229 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Cuprins
Part I: Background
1. Tools
Part II: RF Pulses
2. RF Pulse Shapes
3. Basic RF Pulse Functions
4. Spectral RF Pulses
5. Spatial RF Pulses
7. Advanced RF Pulses
Part III: Gradients
8. Gradient Lobe Shapes
9. Imaging Gradients
10. Motion Sensitizing Gradients
11. Correction Gradients
Part IV: Data Acquisition and k-space Sampling
12. Signal Acquisition and k-Space Sampling
13. Management of Physiologic Motion
Part V: IMAGE RECONSTRUCTION
14. Common Image Reconstruction Techniques
15. Selected Advanced Image Reconstruction Techniques
Part VI: Pulse sequences
16. Basic Pulse Sequences
17. Angiographic Pulse Sequences
18. Echo Train Pulse Sequences
19. Non-Cartesian Pulse Sequences
20. Pulse Sequences for Advanced Applications
21. Selected Measurement Tools
1. Tools
Part II: RF Pulses
2. RF Pulse Shapes
3. Basic RF Pulse Functions
4. Spectral RF Pulses
5. Spatial RF Pulses
7. Advanced RF Pulses
Part III: Gradients
8. Gradient Lobe Shapes
9. Imaging Gradients
10. Motion Sensitizing Gradients
11. Correction Gradients
Part IV: Data Acquisition and k-space Sampling
12. Signal Acquisition and k-Space Sampling
13. Management of Physiologic Motion
Part V: IMAGE RECONSTRUCTION
14. Common Image Reconstruction Techniques
15. Selected Advanced Image Reconstruction Techniques
Part VI: Pulse sequences
16. Basic Pulse Sequences
17. Angiographic Pulse Sequences
18. Echo Train Pulse Sequences
19. Non-Cartesian Pulse Sequences
20. Pulse Sequences for Advanced Applications
21. Selected Measurement Tools