[Abstract] In this article, we present a hybrid method to create fine-grained parcellations of the cortical surface, from a coarse-grained parcellation according to an anatomical atlas, based on cortico-cortical connectivity. The connectivity information is obtained from segmented superficial and deep white matter bundles, according to bundle atlases, instead of the whole tractography. Thus, a direct matching between the fiber bundles and the cortical regions is obtained, avoiding the problem of finding the correspondence of the cortical parcels among subjects. Generating parcels from segmented fiber bundles can provide a good representation of the human brain connectome since they are based on bundle atlases that contain the most reproduci...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
La parcellisation du cerveau humain en aires fonctionnelles est un problème complexe mais majeur pou...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
International audienceIn this paper, we present a method that aims at parcellating the cortical surf...
The macro connectome elucidates the pathways through which brain regions are structurally connected ...
For over a century, neuroscientists have been working toward parcellating the human cortex into dist...
International audienceCurrent theories hold that brain function is highly related with long-range ph...
International audienceThe human brain is arranged in areas based on criteria such as cytoarchitectur...
In-vivo parcellation of the human cortex into functional brain areas is a major goal to better under...
Division of the human cortex into distinct regions is of high importance to neuroscientific inquiry....
International audienceCurrent theories hold that brain function is highly related to long-...
International audienceCurrent theories hold that the human cortex can be subdivided in anatomically ...
The human brain connectome is closely linked to the anatomical framework provided by the structural ...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
La parcellisation du cerveau humain en aires fonctionnelles est un problème complexe mais majeur pou...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
International audienceIn this paper, we present a method that aims at parcellating the cortical surf...
The macro connectome elucidates the pathways through which brain regions are structurally connected ...
For over a century, neuroscientists have been working toward parcellating the human cortex into dist...
International audienceCurrent theories hold that brain function is highly related with long-range ph...
International audienceThe human brain is arranged in areas based on criteria such as cytoarchitectur...
In-vivo parcellation of the human cortex into functional brain areas is a major goal to better under...
Division of the human cortex into distinct regions is of high importance to neuroscientific inquiry....
International audienceCurrent theories hold that brain function is highly related to long-...
International audienceCurrent theories hold that the human cortex can be subdivided in anatomically ...
The human brain connectome is closely linked to the anatomical framework provided by the structural ...
One of the major challenges in systems neuroscience is to identify brain networks and unravel their ...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
La parcellisation du cerveau humain en aires fonctionnelles est un problème complexe mais majeur pou...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...