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    1. Medicin
    2. Andra medicinska specialiteter
    3. Medicinsk bildbehandling

    Advanced Neuro MR Techniques and Applications

    AvIn-Young Choi,Peter Jezzard

    Häftad, Engelska, 2021

    Del 4 i serien Advances in Magnetic Resonance Technology and Applications

    1 265 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Advanced Neuro MR Techniques and Applications gives detailed knowledge of emerging neuro MR techniques and their specific clinical and neuroscience applications, showing their pros and cons over conventional and currently available advanced techniques. The book identifies the best available data acquisition, processing, reconstruction and analysis strategies and methods that can be utilized in clinical and neuroscience research. It is an ideal reference for MR scientists and engineers who develop MR technologies and/or support clinical and neuroscience research and for high-end users who utilize neuro MR techniques in their research, including clinicians, neuroscientists and psychologists.

    Trainees such as postdoctoral fellows, PhD and MD/PhD students, residents and fellows using or considering the use of neuro MR technologies will also be interested in this book.



    • Presents a complete reference on advanced Neuro MR Techniques and Applications
    • Edited and written by leading researchers in the field
    • Suitable for a broad audience of MR scientists and engineers who develop MR technologies, as well as clinicians, neuroscientists and psychologists who utilize neuro MR techniques in their research

    Produktinformation

    • Utgivningsdatum:2021-11-26
    • Mått:191 x 235 x 36 mm
    • Vikt:1 270 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Advances in Magnetic Resonance Technology and Applications
    • Antal sidor:638
    • Förlag:Elsevier Science
    • ISBN:9780128224793

    Utforska kategorier

    • Medicinsk bildbehandling inom Medicin
    • Neurologi och klinisk neurofysiologi inom Medicin

    Mer om författaren

    In-Young Choi, Ph.D. is Professor in the Department of Neurology at the University of Kansas Medical Center. She is also a faculty member with the Department of Molecular & Integrative Physiology and Hoglund Brain Imaging Center, and is affiliated with the Bioengineering Program at the University of Kansas. Dr. Choi received her Ph.D. in Biophysical Sciences and Medical Physics from the University of Minnesota and was trained in advanced magnetic resonance imaging / spectroscopy techniques and neurobiology at the Center for Magnetic Resonance Research at the University of Minnesota. Dr. Choi’s research focuses largely on the identification of quantitative, objective biomarkers of the pathologic mechanisms underlying disease status and progression in a variety of neurological conditions to characterize metabolic, morphological and functional pathophysiology of the disease, and to guide and accelerate the development of new treatment strategies. Dr. Choi works on the development of advanced noninvasive in vivo magnetic resonance imaging and spectroscopy techniques for interdisciplinary translational research, encompassing biomedical imaging, neurology, neurobiology, and neurochemistry. She is a member of the editorial board of Frontiers series and Neurochemical Research, and editor/guest editor of Advances in Neurobiology, NMR in Biomedicine, Neurochemical Research and Magnetic Resonance in Medicine. Professor Jezzard’s FMRIB Physics Group, part of the Wellcome Centre for Integrative Neiroimaging, develops novel physiological MRI methods for the study of healthy and diseased brain. He trained in physics in the UK, before joining the National Institutes of Health, USA, between 1991-1998. Since 1998 he has been based at the University of Oxford, UK. He is particularly interested in techniques for mapping the macroscopic and microscopic neurovasculature, and collaborates closely with various clinical groups, in particular through the Oxford Acute Vascular Imaging Centre (AVIC), on the development of rapid imaging approaches to aid in the diagnosis and treatment of stroke and cerebrovascular disease. A second thread of his research aims to advance ultra-high field imaging. This research combines novel imaging hardware, including parallel RF transmission, with state-of-the-art acquisition techniques. He holds leadership roles in several imaging centres within Oxford, and has been active in the International Society for Magnetic Resonance in Medicine in a range of capacities, including as President from 2013-2014.

    Innehållsförteckning

    • Part 1: Fast and Robust Imaging1. Recommendations for Neuro MRI Acquisition Strategies2. Advanced Reconstruction Methods for Fast MRI3. Simultaneous Multi-Slice MRI4. Motion Artifacts and Correction in Neuro MRIPart 2: Classical and Deep Learning Approaches to Neuro Image Analysis5. Statistical Approaches to Neuroimaging Analysis6. Image Registration7. Image SegmentationPart 3: Diffusion MRI8. Diffusion MRI Acquisition and Reconstruction9. Diffusion MRI Artifact Correction10. Diffusion MRI Analysis Methods11. Diffusion MRI as a Probe of Tissue MicrostructurePart 4: Perfusion MRI12. Non-Contrast Agent Perfusion MRI Methods13. Contrast Agent-Based Perfusion MRI Methods14. Perfusion MRI: Clinical PerspectivesPart 5: Functional MRI15. Functional MRI Principles and Acquisition Strategies16. Functional MRI Analysis17. Neuroscience Applications of Functional MRI18. Clinical Applications of Functional MRIPart 6: The Brain Connectome19. The Diffusion MRI Connectome20. Functional MRI Connectivity21. Applications of MRI ConnectomicsPart 7: Susceptibility MRI22. Principles of Susceptibility-Weighted MRI23. Applications of Susceptibility-Weighted Imaging and MappingPart 8: Magnetization Transfer Approaches24. Magnetization Transfer Contrast MRI25. Chemical Exchange Saturation Transfer (CEST) MRI as a Tunable Relaxation Phenomenon26. Clinical Application of Magnetization Transfer ImagingPart 9: Quantitative Relaxometry and Parameter Mapping27. Quantitative Relaxometry Mapping28. MR Fingerprinting: Concepts, Implementation and Applications29. Quantitative Multi-Parametric MRI MeasurementPart 10: Neurovascular imaging30. Neurovascular Magnetic Resonance Angiography31. Neurovascular Vessel Wall Imaging: New Techniques and Clinical ApplicationsPart 11: Advanced Magnetic Resonance Spectroscopy32. Single Voxel Magnetic Resonance Spectroscopy: Principles and Applications33. Magnetic Resonance Spectroscopic Imaging: Principles and Applications”34. Non-Fourier-Based Magnetic Resonance SpectroscopyPart 12: Ultra-high Field Neuro MR Techniques35. Benefits, Challenges and Applications of Ultra-High Field Magnetic Resonance36. Neuroscience Applications of Ultra-High-Field Magnetic Resonance Imaging: Mesoscale Functional Imaging of the Human Brain37. Clinical Applications of High Field Magnetic Resonance