The neocortex of the human brain is the seat of higher brain function. Modern imaging techniques, chief among them magnetic resonance imaging (MRI), allow non-invasive imaging of this important structure. Knowledge of the microstructure of the neocortex has classically come from post-mortem histological studies of human tissue, and extrapolations from invasive animal studies. From these studies, we know that the scale of important neocortical structure spans six orders of magnitude, ranging from the size of axonal diameters (microns), to the size of cortical areas responsible for integrating sensory information (centimetres). MRI presents an opportunity to move beyond classical methods, because MRI is non-invasive and MRI contrast is sensit...
MRI provides a powerful tool to investigate brain structure in living humans. However a major challe...
Neurobiology underlying inter-regional variations - across the human cerebral cortex - in measures d...
Structural magnetic resonance imaging can now resolve laminar features within the cerebral cortex in...
The neocortex of the human brain is the seat of higher brain function. Modern imaging techniques, ch...
The human lateral geniculate nucleus (LGN) of the visual thalamus is a key subcortical processing si...
In this manuscript, the use of quantitative imaging at ultra-high field is evaluated as a mean to st...
Cytoarchitectonic fields of the human neocortex are defined by characteristic variations in the comp...
This work presents a novel approach for modelling laminar myelin patterns in the human cortex in bra...
Research in the macaque monkey suggests that cortical areas with similar microstructure are more lik...
The non-invasive characterization of brain myelin has essential applications in basic neuroscience a...
AbstractThis work presents a novel approach for modelling laminar myelin patterns in the human corte...
The human subcortex comprises hundreds of unique structures. Subcortical functioning is crucial for ...
Recent breakthroughs in magnetic resonance imaging (MRI) enabled quantitative relaxometry and diffus...
The human lateral geniculate nucleus (LGN) of the visual thalamus is a key subcortical processing si...
The human neocortex is organized radially into six layers which differ in their myelination and the ...
MRI provides a powerful tool to investigate brain structure in living humans. However a major challe...
Neurobiology underlying inter-regional variations - across the human cerebral cortex - in measures d...
Structural magnetic resonance imaging can now resolve laminar features within the cerebral cortex in...
The neocortex of the human brain is the seat of higher brain function. Modern imaging techniques, ch...
The human lateral geniculate nucleus (LGN) of the visual thalamus is a key subcortical processing si...
In this manuscript, the use of quantitative imaging at ultra-high field is evaluated as a mean to st...
Cytoarchitectonic fields of the human neocortex are defined by characteristic variations in the comp...
This work presents a novel approach for modelling laminar myelin patterns in the human cortex in bra...
Research in the macaque monkey suggests that cortical areas with similar microstructure are more lik...
The non-invasive characterization of brain myelin has essential applications in basic neuroscience a...
AbstractThis work presents a novel approach for modelling laminar myelin patterns in the human corte...
The human subcortex comprises hundreds of unique structures. Subcortical functioning is crucial for ...
Recent breakthroughs in magnetic resonance imaging (MRI) enabled quantitative relaxometry and diffus...
The human lateral geniculate nucleus (LGN) of the visual thalamus is a key subcortical processing si...
The human neocortex is organized radially into six layers which differ in their myelination and the ...
MRI provides a powerful tool to investigate brain structure in living humans. However a major challe...
Neurobiology underlying inter-regional variations - across the human cerebral cortex - in measures d...
Structural magnetic resonance imaging can now resolve laminar features within the cerebral cortex in...