Temporal metastates are associated with differential patterns of time-resolved connectivity, network topology, and attention.
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Positive affect, surprise, and fatigue are correlates of network flexibilityHigh transition frequencies of dynamic functional connectivity states in the creative brain.On wakefulness fluctuations as a source of BOLD functional connectivity dynamics.Investigations into within- and between-subject resting-state amplitude variations.Modeling and interpreting mesoscale network dynamics.Dynamic graph metrics: Tutorial, toolbox, and tale.Cohesive network reconfiguration accompanies extended training.The global signal in fMRI: Nuisance or Information?Characterizing Attention with Predictive Network Models.Schizophrenia Shows Disrupted Links between Brain Volume and Dynamic Functional Connectivity.Developmental increases in white matter network controllability support a growing diversity of brain dynamics.Brain state flexibility accompanies motor-skill acquisition.From Maps to Multi-dimensional Network Mechanisms of Mental Disorders.Brain state expression and transitions are related to complex executive cognition in normative neurodevelopment.Bayesian Structure Learning for Dynamic Brain ConnectivityMethods and Considerations for Dynamic Analysis of Functional MR Imaging Data.Replicability of time-varying connectivity patterns in large resting state fMRI samples.Structure-function relationships during segregated and integrated network states of human brain functional connectivity.Time-Resolved Resting-State Functional Magnetic Resonance Imaging Analysis: Current Status, Challenges, and New Directions.The modulation of neural gain facilitates a transition between functional segregation and integration in the brain.The behavioral and cognitive relevance of time-varying, dynamic changes in functional connectivity.Role of Graph Architecture in Controlling Dynamical Networks with Applications to Neural Systems.Towards a new approach to reveal dynamical organization of the brain using topological data analysis.Consensus clustering approach to group brain connectivity matrices.The human cortex possesses a reconfigurable dynamic network architecture that is disrupted in psychosis.From static to temporal network theory: Applications to functional brain connectivity.Spontaneous cognitive processes and the behavioral validation of time-varying brain connectivity
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Temporal metastates are associated with differential patterns of time-resolved connectivity, network topology, and attention.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 15 August 2016
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Temporal metastates are associ ...... twork topology, and attention.
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Temporal metastates are associ ...... twork topology, and attention.
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type
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Temporal metastates are associ ...... twork topology, and attention.
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Temporal metastates are associ ...... twork topology, and attention.
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Temporal metastates are associ ...... twork topology, and attention.
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Temporal metastates are associ ...... twork topology, and attention.
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P2860
P356
P1476
Temporal metastates are associ ...... twork topology, and attention.
@en
P2093
Oluwasanmi Koyejo
P2860
P304
P356
10.1073/PNAS.1604898113
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P577
2016-08-15T00:00:00Z
P698
P818
1601.05065