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Magnetic resonance imaging at 9.4 T: the Maastricht journey
Dimo Ivanov
*
,
Federico De Martino
,
Elia Formisano
, F.J. Fritz
,
Rainer Goebel
, Laurentius Huber
, S. Kashyap
, Valentin Kemper
,
Denizhan Kurban
,
Alard Roebroeck
, S. Sengupta
,
Bettina Sorger
, Desmond H.Y. Tse
, K. Uludag
, C.J. Wiggins
,
Benedikt A. Poser
*
Corresponding author for this work
MR Methods for Neuroscience
Auditory Neurosc. & Statistical Modeling
Auditory Perception and Cognition
BISS-Brightlands Institute for Smart Society
MaCSBio | Faculty of Pyschology and Neuroscience
MaCSBio | Faculty of Science and Engineering
Visual Neurosc. & Brain–Computer Interf.
Computational architecture of visual processing streams
Multiscale Imaging of Brain Connectivity
Multiscale Imaging of Brain Connectivity
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Keyphrases
Magnetic Resonance Imaging
100%
Maastricht
100%
Functional Magnetic Resonance Imaging
66%
Anatomical Imaging
66%
Blood Oxygen Level-dependent
66%
Functional Imaging
33%
Blood Volume
33%
Diffusion Imaging
33%
Whole-body
33%
Functional Data
33%
Imaging Experiment
33%
Work-as-done
33%
High Field Strength
33%
Anatomical Data
33%
Full Potential
33%
Constraint Set
33%
RF Power Deposition
33%
Head Gradient
33%
Field Challenges
33%
Ultra-high Field
33%
Field Inhomogeneity
33%
INIS
nmr imaging
100%
blood
100%
levels
66%
comparative evaluations
66%
data
33%
volume
33%
diffusion
33%
sensitivity
33%
power
33%
applications
33%
reviews
33%
design
33%
constraints
33%
in vivo
33%
readout systems
33%
deposition
33%
magnets
33%
Medicine and Dentistry
Magnetic Resonance Imaging
100%
Functional Magnetic Resonance Imaging
100%
Blood Oxygenation
100%
Functional Imaging
50%
Ex Vivo
50%
Diffusion Imaging
50%