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Behavioral Interpretations of Intrinsic Connectivity Networks

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2011
MIT Pr. Journals Cambridge, Mass.

Journal of cognitive neuroscience 23, 4022 - 4037 () [10.1162/jocn_a_00077]

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Abstract: An increasingly large number of neuroimaging studies have investigated functionally connected networks during rest, providing insight into human brain architecture. Assessment of the functional qualities of resting state networks has been limited by the task-independent state, which results in an inability to relate these networks to specific mental functions. However, it was recently demonstrated that similar brain networks can be extracted from resting state data and data extracted from thousands of task-based neuroimaging experiments archived in the BrainMap database. Here, we present a full functional explication of these intrinsic connectivity networks at a standard low order decomposition using a neuroinformatics approach based on the BrainMap behavioral taxonomy as well as a stratified, data-driven ordering of cognitive processes. Our results serve as a resource for functional interpretations of brain networks in resting state studies and future investigations into mental operations and the tasks that drive them.

Keyword(s): Brain: physiology (MeSH) ; Brain Mapping: methods (MeSH) ; Classification: methods (MeSH) ; Cluster Analysis (MeSH) ; Databases, Factual (MeSH) ; Humans (MeSH) ; Nerve Net: physiology (MeSH) ; Neural Pathways: physiology (MeSH) ; Psychomotor Performance: physiology (MeSH) ; J


Note: This work was supported by NIMH grants R01-MH074457 (P. T. F. and A. R. L.) and R01-MH084812 (A. R. L. and J. A. T.) and the Helmholz Initiative on Systems-Biology (S. B. E.).

Contributing Institute(s):
  1. Molekulare Organisation des Gehirns (INM-2)
Research Program(s):
  1. Funktion und Dysfunktion des Nervensystems (FUEK409) (FUEK409)
  2. 89571 - Connectivity and Activity (POF2-89571) (POF2-89571)

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