
- 592 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
Ultra-High Field Neuro MRI
About this book
Ultra-High Field Neuro MRI is a comprehensive reference and educational resource on the current state of neuroimaging at ultra-high field (UHF), with an emphasis on 7T. Sections cover the MR physics aspects of UHF, including the technical challenges and practical solutions that have enabled the rapid growth of 7T MRI. Individual chapters are dedicated to the different techniques that most strongly benefit from UHF, as well as chapters with a focus on different application areas in anatomical, functional and metabolic imaging. Finally, several chapters highlight the neurological and psychiatric applications for which 7T has shown benefits. The book is aimed at scientists who develop MR technologies and support clinical and neuroscience research, as well as users who want to benefit from UHF neuro MR techniques in their work. It also provides a comprehensive introduction to the field.
- Presents the opportunities and technical challenges presented by MRI at ultra-high field
- Describes advanced ultra-high field neuro MR techniques for clinical and neuroscience applications
- Enables the reader to critically assess the specific UHF advantages over currently available techniques at clinical field strengths
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Table of contents
- Cover image
- Table of Contents
- Series Page
- Copyright
- List of contributors
- Editor's biographies
- Foreword
- Part 1: Benefits of ultra-high field
- Chapter 1: The way back and ahead: MR physics at ultra-high field
- Chapter 2: Translating UHF advances to lower field strength
- Part 2: Acquisition at ultra-high field: Practical considerations
- Chapter 3: Practical solutions to practical constraints: Making things work at ultra-high field
- Chapter 4: Practical considerations on ultra-high field safety
- Chapter 5: Biological effects, patient experience, and occupational safety
- Part 3: Ultra-high field challenges and technical solutions
- Chapter 6: B0 inhomogeneity: Causes and coping strategies
- Chapter 7: Parallel transmission: Physics background, pulse design, and applications in neuro MRI at ultra-high field
- Chapter 8: RF coils for ultra-high field neuroimaging
- Chapter 9: Parallel imaging and reconstruction techniques
- Chapter 10: Motion correction
- Part 4: Ultra-high field structural imaging: Techniques for neuroanatomy
- Chapter 11: High-resolution T1 -, T2 -, and T2*-weighted anatomical imaging
- Chapter 12: Brain segmentation at ultra-high field: Challenges, opportunities, and unmet needs
- Chapter 13: Phase imaging: Susceptibility-Weighted Imaging and Quantitative Susceptibility Mapping
- Chapter 14: Quantitative MRI and multiparameter mapping
- Part 5: Ultra-high field structural imaging: Zooming in on the brain
- Chapter 15: Cerebellar imaging at ultra-high magnetic fields
- Chapter 16: Ultra-high field imaging of the human medial temporal lobe
- Chapter 17: Imaging of subcortical deep brain structures with 7T MRI
- Chapter 18: Brainstem imaging
- Chapter 19: Ultra-high field spinal cord MRI
- Part 6: Diffusion and perfusion imaging at ultra-high field
- Chapter 20: Diffusion MRI at ultra-high field strengths
- Chapter 21: Ultra-high field brain perfusion MRI
- Part 7: Ultra-high field functional imaging
- Chapter 22: BOLD fMRI: Physiology and acquisition strategies
- Chapter 23: Sequences and contrasts for non-BOLD fMRI
- Chapter 24: Laminar and columnar imaging at UHF: Considerations for mesoscopic-scale imaging with fMRI
- Chapter 25: The power of ultra-high field for cognitive neuroscience: Gray-matter optimized fMRI
- Part 8: Techniques for ultra-high field metabolic imaging and spectroscopy
- Chapter 26: MR spectroscopy and spectroscopic imaging
- Chapter 27: Imaging with X-nuclei
- Chapter 28: Chemical exchange saturation transfer MRI in the human brain at ultra-high fields
- Part 9: Benefits of ultra-high field in clinical applications
- Chapter 29: Epilepsy
- Chapter 30: Multiple sclerosis
- Chapter 31: Neurovascular disease
- Chapter 32: Motor neuron diseases and frontotemporal dementia
- Chapter 33: Parkinson's disease and atypical parkinsonism
- Chapter 34: Healthy aging and Alzheimer's disease
- Chapter 35: Ultra-high field neuro-MRI: Oncological applications
- Chapter 36: Psychiatric applications of ultra-high field MR neuroimaging
- Part 10: New horizons
- Chapter 37: New horizons: Human MRI at extremely high field strengths
- Index
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Yes, you can access Ultra-High Field Neuro MRI by Karin Markenroth Bloch,Maxime Guye,Benedikt A. Poser in PDF and/or ePUB format, as well as other popular books in Computer Science & Digital Media. We have over 1.5 million books available in our catalogue for you to explore.