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Here we present a supplementary map in which the overall density of the myelinated fibers in the individual architectonic areas is indicated, based on a meta-analysis of data provided by Adolf Hopf, a prominent collaborator of the Vogts. Recently published MRI-based in vivo myelin content mappings show, with regard to the primary sensory and motor regions, a striking concordance with our map.
NeurocienciaNews added 2 new photos. Brain Struct Funct A map of the human neocortex showing the estimated overall myelin content of the individual architectonic areas based on the studies of Adolf Hopf.
Corteza auditiva: fisiologia
This map shows that the primary sensory and motor regions are densely myelinated and that, in general, myelination decreases stepwise with the distance from these primary regions. These formations were provisionally designated as the orbitofrontal, intraparietal, posterolateral temporal, and basal temporal dark clusters.
Because these data were derived from many different brains, a standard brain had to be introduced to which all data available could be transferred.
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AREAS FUNCIONALES DE BRODMANN by ARIAS REYES on Prezi
As such the Colin 27 structural scan, aligned to the MNI template was selected. See more of Neuropsique on Facebook.
Brain Struct Funct Neuropsique shared NeurocienciaNews ‘s post. As regards the heavily myelinated clusters shown by our map, scrutiny of the current literature revealed that correlates of all of these clusters have been identified in in vivo structural Beodman studies and appear to correspond either entirely or largely to known cytoarchitectonic entities.
The resultant map includes myeloarchitectonic areas, 64 frontal, 30 parietal, 6 insular, 17 occipital arews 63 temporal. Moreover, functional neuroimaging studies indicate that all of these clusters are involved in vision-related cognitive functions.
Laura Marrufo Public Figure. The map also reveals the presence of a number of heavily myelinated formations, situated beyond the primary sensory and motor domains, each consisting of two or more myeloarchitectonic areas.