Noack R, Manjesh C, Ruszinko M, Siegelmann H, Kozma R. (2017). Resting state neural networks and energy metabolism 2017 International Joint Conference on Neural Networks (IJCNN).

See more from authors: Noack R · Manjesh C · Ruszinko M · Siegelmann H · Kozma R

References and models cited by this paper

Cloutier M, Bolger FB, Lowry JP, Wellstead P. (2009). An integrative dynamic model of brain energy metabolism using in vivo neurochemical measurements. Journal of computational neuroscience. 27 [PubMed]

Crossley NA et al. (2013). Cognitive relevance of the community structure of the human brain functional coactivation network. Proceedings of the National Academy of Sciences of the United States of America. 110 [PubMed]

Deco G, Jirsa VK, McIntosh AR. (2011). Emerging concepts for the dynamical organization of resting-state activity in the brain. Nature reviews. Neuroscience. 12 [PubMed]

Fox MD, Raichle ME. (2007). Spontaneous fluctuations in brain activity observed with functional magnetic resonance imaging. Nature reviews. Neuroscience. 8 [PubMed]

Freeman WJ. (1975). Mass Action In The Nervous System.

Freeman WJ. (2006). A cinematographic hypothesis of cortical dynamics in perception. International journal of psychophysiology : official journal of the International Organization of Psychophysiology. 60 [PubMed]

Freeman WJ. (2007). Proposed cortical ''shutter'' mechanism in cinematographic perception Neurodynamics Of Cognition And Consciousness.

Freeman WJ, Kozma R. (2016). Cognitive phase transitions in the cerebral cortex-enhancing the neuron doctrine my modeling neural field.

Ghosh S, Basu A. (2012). Calcium signaling in cerebral vasoregulation. Advances in experimental medicine and biology. 740 [PubMed]

HUBEL DH, WIESEL TN. (1962). Receptive fields, binocular interaction and functional architecture in the cat's visual cortex. The Journal of physiology. 160 [PubMed]

Haatveit B et al. (2016). Reduced load-dependent default mode network deactivation across executive tasks in schizophrenia spectrum disorders. NeuroImage. Clinical. 12 [PubMed]

Haimovici A, Tagliazucchi E, Balenzuela P, Chialvo DR. (2013). Brain organization into resting state networks emerges at criticality on a model of the human connectome. Physical review letters. 110 [PubMed]

Hebb DO. (1949). The Organization Of Behavior.

Heinonen J et al. (2016). Default Mode and Executive Networks Areas: Association with the Serial Order in Divergent Thinking. PloS one. 11 [PubMed]

Izhikevich EM. (2003). Simple model of spiking neurons. IEEE transactions on neural networks. 14 [PubMed]

Jolivet R, Coggan JS, Allaman I, Magistretti PJ. (2015). Multi-timescale modeling of activity-dependent metabolic coupling in the neuron-glia-vasculature ensemble. PLoS computational biology. 11 [PubMed]

Noack RA. (2012). Solving the "human problem": the frontal feedback model. Consciousness and cognition. 21 [PubMed]

Raichle ME. (2010). The brain's dark energy. Scientific American. 302 [PubMed]

Ros T, J Baars B, Lanius RA, Vuilleumier P. (2014). Tuning pathological brain oscillations with neurofeedback: a systems neuroscience framework. Frontiers in human neuroscience. 8 [PubMed]

Shirer WR, Ryali S, Rykhlevskaia E, Menon V, Greicius MD. (2012). Decoding subject-driven cognitive states with whole-brain connectivity patterns. Cerebral cortex (New York, N.Y. : 1991). 22 [PubMed]

Siegelmann H, L. R. . (2015). Individual variability in human brain connectivity modeled using multiscale dynamics under energy constraints Unpublished Manuscript.

Sridharan D, Levitin DJ, Menon V. (2008). A critical role for the right fronto-insular cortex in switching between central-executive and default-mode networks. Proceedings of the National Academy of Sciences of the United States of America. 105 [PubMed]

van den Heuvel MP, Hulshoff Pol HE. (2010). Exploring the brain network: a review on resting-state fMRI functional connectivity. European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology. 20 [PubMed]

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