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Graph Brain Network Analysis×Dynamische funktionelle Konnektivität×
FachgebietNeurobildgebungNeurobildgebung
FamilieProcess / pipelineProcess / pipeline
Entstehungsjahr20092013
UrheberEd BullmoreRyan M. Hutchison
TypBrain network graph analysis pipelineResting-state fMRI connectivity pipeline
Wegweisende QuelleBullmore, E., & Sporns, O. (2009). Complex brain networks: graph theoretical analysis of structural and functional systems. Nature Reviews Neuroscience, 10(3), 186–198. DOI ↗Hutchison, R. M., Womelsdorf, T., Allen, E. A., et al. (2013). Dynamic functional connectivity: promise, problems, and perspectives. NeuroImage, 80, 360–378. link ↗
Aliasnamengraph theory, brain network analysis, network neurosciencedFC, time-varying connectivity, sliding window connectivity
Verwandt33
ZusammenfassungGraph Theoretical Brain Network Analysis applies network science to understand brain organization, treating the brain as a complex network of interconnected nodes (regions) and edges (connections). Formalized by Bullmore and Sporns in 2009, graph analysis reveals fundamental organizational principles—modularity, efficiency, resilience—that characterize healthy and diseased brains.Dynamic Functional Connectivity (dFC) is an analytical framework that tracks changes in functional connectivity between brain regions over time, rather than averaging connectivity across an entire scanning session. Systematized by Hutchison and colleagues in 2013, dFC reveals how brain networks reorganize moment-to-moment, providing insights into transient brain states and cognitive flexibility.
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ScholarGateMethoden vergleichen: Graph Brain Network Analysis · Dynamic Functional Connectivity. Abgerufen am 2026-06-15 von https://scholargate.app/de/compare