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The human brain is intrinsically organized into dynamic, anticorrelated functional networks

Proceedings of the National Academy of Sciences · 2005 · Vol. 102(27) · pp. 9673–9678
Michael FoxAbraham Z. SnyderJustin L. VincentMaurizio CorbettaDavid C. Van EssenMarcus E. Raichle

Abstract

During performance of attention-demanding cognitive tasks, certain regions of the brain routinely increase activity, whereas others routinely decrease activity. In this study, we investigate the extent to which this task-related dichotomy is represented intrinsically in the resting human brain through examination of spontaneous fluctuations in the functional MRI blood oxygen level-dependent signal. We identify two diametrically opposed, widely distributed brain networks on the basis of both spontaneous correlations within each network and anticorrelations between networks. One network consists of regions routinely exhibiting task-related activations and the other of regions routinely exhibiting task-related deactivations. This intrinsic organization, featuring the presence of anticorrelated networks in the absence of overt task performance, provides a critical context in which to understand brain function. We suggest that both task-driven neuronal responses and behavior are reflections of this dynamic, ongoing, functional organization of the brain.

Functional Brain Connectivity StudiesNeural dynamics and brain functionEEG and Brain-Computer InterfacesContext (archaeology)NeuroscienceDynamic functional connectivityTask (project management)Human brainBrain functionBrain activity and meditationCognitionFunctional connectivityDefault mode network

MeSH terms

AttentionBrainBrain MappingElectroencephalographyHumansMagnetic Resonance ImagingModels, NeurologicalOxygenTask Performance and Analysis

Funding

  • National Institutes of Health
Citations
8,772
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51
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100%
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Nature reviews. Neuroscience · 2001 · 3,394 citations
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Nature reviews. Neuroscience · 2001 · 3,521 citations
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