Scinovex
articleTop 1% cited

A whole brain fMRI atlas generated via spatially constrained spectral clustering

Human Brain Mapping · 2011 · Vol. 33(8) · pp. 1914–1928
R. Cameron CraddockG. Andrew JamesPaul E. HoltzheimerXiaoping HuHelen S. Mayberg

Abstract

Connectivity analyses and computational modeling of human brain function from fMRI data frequently require the specification of regions of interests (ROIs). Several analyses have relied on atlases derived from anatomical or cyto-architectonic boundaries to specify these ROIs, yet the suitability of atlases for resting state functional connectivity (FC) studies has yet to be established. This article introduces a data-driven method for generating an ROI atlas by parcellating whole brain resting-state fMRI data into spatially coherent regions of homogeneous FC. Several clustering statistics are used to compare methodological trade-offs as well as determine an adequate number of clusters. Additionally, we evaluate the suitability of the parcellation atlas against four ROI atlases (Talairach and Tournoux, Harvard-Oxford, Eickoff-Zilles, and Automatic Anatomical Labeling) and a random parcellation approach. The evaluated anatomical atlases exhibit poor ROI homogeneity and do not accurately reproduce FC patterns present at the voxel scale. In general, the proposed functional and random parcellations perform equivalently for most of the metrics evaluated. ROI size and hence the number of ROIs in a parcellation had the greatest impact on their suitability for FC analysis. With 200 or fewer ROIs, the resulting parcellations consist of ROIs with anatomic homology, and thus offer increased interpretability. Parcellation results containing higher numbers of ROIs (600 or 1,000) most accurately represent FC patterns present at the voxel scale and are preferable when interpretability can be sacrificed for accuracy. The resulting atlases and clustering software have been made publicly available at: http://www.nitrc.org/projects/cluster_roi/.

Functional Brain Connectivity StudiesNeural dynamics and brain functionAdvanced Neuroimaging Techniques and ApplicationsInterpretabilityVoxelArtificial intelligenceCluster analysisAtlas (anatomy)Pattern recognition (psychology)Computer scienceRegion of interestResting state fMRIHomogeneity (statistics)

MeSH terms

AdolescentAdultAnatomy, ArtisticAtlases as TopicBrainBrain MappingHumansImage Interpretation, Computer-AssistedMagnetic Resonance ImagingMiddle AgedSoftwareCluster AnalysisYoung Adult
Citations
1,682
FWCI
21.64
field-weighted impact
References
55
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.