Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a crucial requirement before meaningful regional analysis can occur. The human cortex can be parcellated into distinct regions based on structural features, such as gyri and sulci. Brain network patterns in a given region with respect to its neighbors, known as connectional fingerprints, can be used to parcellate the cortex. Distinct imaging modalities might provide complementary information for brain parcellation. Here, we established functional connectivity with time series data from functional MRI (fMRI) combined with a correlation map of cortical thickness obtained from T1-weighted MRI. We aimed to extend the previous study, which parcella...
The macro-connectome elucidates the pathways through which brain regions are structurally connected ...
International audienceCurrent theories hold that the human cortex can be subdivided in anatomically ...
The macro connectome elucidates the pathways through which brain regions are structurally connected ...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
Nowadays, connectivity patterns of brain networks are of special interest, as they may reflect commu...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
Network analysis of resting-state fMRI (rsfMRI) has been widely utilized to investigate the function...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
The macro-connectome elucidates the pathways through which brain regions are structurally connected ...
International audienceCurrent theories hold that the human cortex can be subdivided in anatomically ...
The macro connectome elucidates the pathways through which brain regions are structurally connected ...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
Nowadays, connectivity patterns of brain networks are of special interest, as they may reflect commu...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
Network analysis of resting-state fMRI (rsfMRI) has been widely utilized to investigate the function...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
The macro-connectome elucidates the pathways through which brain regions are structurally connected ...
International audienceCurrent theories hold that the human cortex can be subdivided in anatomically ...
The macro connectome elucidates the pathways through which brain regions are structurally connected ...