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Local-Global Parcellation of the Human Cerebral Cortex from Intrinsic Functional Connectivity MRI

Cerebral Cortex · 2017 · Vol. 28(9) · pp. 3095–3114
Alexander SchaeferRu KongEvan M. GordonTimothy O. LaumannXi‐Nian ZuoAvram J. HolmesSimon B. EickhoffB.T. Thomas Yeo

Abstract

A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neurobiological "atoms". Resting-state functional magnetic resonance imaging (rs-fMRI) offers the possibility of in vivo human cortical parcellation. Almost all previous parcellations relied on 1 of 2 approaches. The local gradient approach detects abrupt transitions in functional connectivity patterns. These transitions potentially reflect cortical areal boundaries defined by histology or visuotopic fMRI. By contrast, the global similarity approach clusters similar functional connectivity patterns regardless of spatial proximity, resulting in parcels with homogeneous (similar) rs-fMRI signals. Here, we propose a gradient-weighted Markov Random Field (gwMRF) model integrating local gradient and global similarity approaches. Using task-fMRI and rs-fMRI across diverse acquisition protocols, we found gwMRF parcellations to be more homogeneous than 4 previously published parcellations. Furthermore, gwMRF parcellations agreed with the boundaries of certain cortical areas defined using histology and visuotopic fMRI. Some parcels captured subareal (somatotopic and visuotopic) features that likely reflect distinct computational units within known cortical areas. These results suggest that gwMRF parcellations reveal neurobiologically meaningful features of brain organization and are potentially useful for future applications requiring dimensionality reduction of voxel-wise fMRI data. Multiresolution parcellations generated from 1489 participants are publicly available (https://github.com/ThomasYeoLab/CBIG/tree/master/stable_projects/brain_parcellation/Schaefer2018_LocalGlobal).

Functional Brain Connectivity StudiesAdvanced MRI Techniques and ApplicationsAdvanced Neuroimaging Techniques and ApplicationsNeuroscienceFunctional connectivityCerebral cortexPsychologyHuman brainBrain mapping

MeSH terms

AdolescentAdultBrain MappingCerebral CortexFemaleHumansMagnetic Resonance ImagingMaleNerve NetYoung Adult

Funding

  • Massachusetts General Hospital
  • National Research Foundation
  • National University of Singapore
  • National Research Foundation Singapore
  • Deutscher Akademischer Austauschdienst
  • National Natural Science Foundation of China
  • Ministry of Education, India
  • Centre d'Imagerie BioMédicale
  • National Institutes of Health
  • McDonnell Center for Systems Neuroscience
  • Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital
  • Medical Research Council
  • National Medical Research Council
  • National Institute of Mental Health
  • NIH Blueprint for Neuroscience Research
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