Part 1: Motion in MR scans 1. Clinical Impact: Why do Patients Move? 2. Impact of Motion on Research Studies 3. Cost Economy of Motion 4. Physical and Pharmacologic Solutions 5. Psychosocial Solutions
Part 2: Consistent Anatomical Selection 6. Automatically Detecting Anatomy 7. Anatomical Coordinate Systems
Part 3: Scan Quality and Motion Metrics 8. Metrics for Motion and MR Quality Assessment 9. Digital and Physical Phantoms for Motion Simulation 10. Analytics/Modality Log Files
Part 4: Dynamic Effects that Compromise Scan Quality in MRI 11. Types of Motion 12. Other Dynamic Changes
Part 5: Methods of Detecting Motion and Associated Field Changes in Real Time 13. External Trackers 14. k-Space Navigators 15. Image-Space Navigators 16. Navigators Without Gradients
Part 6: Retrospective Correction 17. Retrospective Correction of Motion in Images 18. Effects of Motion on Acceleration Techniques 19. Retrospective Correction of Secondary Effects of Motion 20. Machine Learning
Part 7: Prospective Correction 21. Prospective Real-Time Motion Correction and Reacquisition 22. Prospective B0 Correction
Part 8: Clinical Applications Beyond the Brain 23. Body Imaging 24. Musculoskeletal Imaging 25. Cardiac Imaging
Part 9: Technical Applications by Method 26. Spectroscopy, CEST and MT 27. High Resolution Structural Brain Imaging 28. Amplified MR and Physiological Motion 29. Diffusion Imaging 30. Non-Cartesian Imaging 31. Functional MRI
Part 10: Special Applications 32. Fetal and Placental Imaging 33. Neonatal and Pediatric Imaging 34. PET/MR 35. Non-Human Imaging