Diffusion MRIOxford University Press, 11 nov 2010 - 784 páginas Professor Derek Jones, a world authority on diffusion MRI, has assembled most of the world's leading scientists and clinicians developing and applying diffusion MRI to produce an authorship list that reads like a "Who's Who" of the field and an essential resource for those working with diffusion MRI. Destined to be a modern classic, this definitive and richly illustrated work covers all aspects of diffusion MRI from basic theory to clinical application. Oxford Clinical Neuroscience is a comprehensive, cross-searchable collection of resources offering quick and easy access to eleven of Oxford University Press's prestigious neuroscience texts. Joining Oxford Medicine Online these resources offer students, specialists and clinical researchers the best quality content in an easy-to-access format. |
Índice
The Basics of Diffusion MRI | 43 |
Experimental Aspects of Diffusion MRI | 169 |
Fiber Tracking | 381 |
Crossing Fibers | 449 |
Diffusion MRI of Brain Disorders | 483 |
Diffusion MRI Beyond White Matter | 645 |
How It All StartedPersonal Perspectives from the Pioneers | 703 |
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Otras ediciones - Ver todo
Diffusion MRI: Theory, Methods, and Applications Derek K. Jones, PhD No hay ninguna vista previa disponible - 2011 |
Términos y frases comunes
acquisition Alexander algorithm analysis anisotropy applied approach artifacts Assaf axonal b-value Basser PJ Bihan bootstrap cell cerebral Chapter clinical component connectivity corpus callosum cortex cortical corticospinal tract diffusion anisotropy diffusion gradient diffusion imaging diffusion MRI diffusion tensor imaging diffusion tensor MRI diffusion weighting diffusion-weighted images direction displacement distortions distribution DT-MRI eddy currents effects eigenvalues eigenvector encoding errors estimate fiber orientation field Figure fractional anisotropy function gradient pulses gray matter human brain intracellular ISMRM Jones DK k-space lesions linear Magn Reson magnetic resonance imaging maps matrix measurements methods molecules motion myelin Neuroimage neuronal noise Pajevic parameters pathways patients phase phase-encoding Pierpaoli readout reconstruction regions s/mm² sampling scan sequence signal sion Skare slice spatial spherical spin echo statistical stroke structure studies tion tissue tractography tumor values vector visualization vivo voxel water diffusion white matter
