Y. Y. Ahn, J. P. Bagrow, and S. Lehmann, Link communities reveal multiscale complexity in networks, Advances in neural information processing systems 8. Denver: NIPS, vol.466, pp.761-764, 1995.

C. Amiez, M. Petrides, C. Crossref-medline-amiez, F. Hadj-bouziane, M. Petrides et al., Human and rodent homologies in action control: corticostriatal determinants of goal-directed and habitual action, Neuroimaging evidence of the anatomofunctional organization of the human cingulate motor areas. Cereb Cortex, vol.24, pp.289-301, 2008.

N. P. Bichot, A. F. Rossi, and R. Desimone, Parallel and serial neural mechanisms for visual search in macaque area V4, Science, vol.308, pp.529-534, 2005.

F. Bonini, B. Burle, C. Liegeois-chauvel, J. Régis, P. Chauvel et al., Attentional stimulus selection through selective synchronization between monkey visual areas, CrossRef Medline Botvinick MM, vol.343, pp.539-546, 2004.

S. L. Bressler, V. Menon, S. L. Bressler, A. Seth, A. Brovelli et al., CrossRef Medline Cheyne D, Ferrari P (2013) MEG studies of motor cortex gamma oscillations: evidence for a gamma "fingerprint, Large-scale brain networks in cognition: emerging methods and principles, vol.14, pp.167-174, 2002.

N. E. Crone, A. Sinai, A. Korzeniewska, J. C. Culham, K. F. Valyear et al., Simultaneous MEG and intracranial EEG recordings during attentive reading, High-frequency gamma oscillations and human brain mapping with electrocorticography, vol.159, pp.277-293, 1993.

A. Dickinson and B. Balleine, Actions and habits: the development of behavioral autonomy, Granger causality: basic theory and application to neuroscience, vol.22, pp.67-78, 1985.

P. Fries, P. Fries, J. H. Reynolds, A. E. Rorie, R. Desimone et al., Modulation of oscillatory neuronal synchronization by selective visual attention, A mechanism for cognitive dynamics: neuronal communication through neuronal coherence, vol.9, pp.28-48, 1963.

C. Granger, S. J. Gotts, H. Zhou, R. Desimone, J. Gross et al., High-frequency, long-range coupling between prefrontal and visual cortex during attention, CrossRef Medline Hadj-Bouziane F, vol.2, pp.567-579, 1980.

P. Hansen, M. Kringelbach, and R. Salmelin, MEG: an introduction to methods, 2010.

S. Haufe, V. V. Nikulin, K. R. Müller, G. Nolte, D. Hermes et al., Causality detection based on information-theoretic approaches in time series analysis, CrossRef Medline Hlavá?ková, vol.64, pp.1-46, 2007.

F. Hummel, C. Gerloff, O. Jensen, B. Gips, T. O. Bergmann et al., Larger interregional synchrony is associated with greater behavioral success in a complex sensory integration task in humans, Task-related gamma-band dynamics from an intracerebral perspective: review and implications for surface EEG and MEG. Hum Brain Mapp, vol.15, pp.1758-1771, 2005.

S. Killcross, E. Coutureau, A. L. Ko, K. E. Weaver, S. Hakimian et al., Highfrequency neural activity and human cognition: past, present and possible future of intracranial EEG research, Relationship between task-related gamma oscillations and BOLD signal: new insights from combined fMRI and intracranial EEG. Hum Brain Mapp, vol.13, pp.150-157, 2000.

H. Marko, S. Mériaux, A. Roche, G. Dehaene-lambertz, B. Thirion et al., CrossRef Medline Moran R, Pinotsis DA, Friston K (2013) Neural masses and fields in dynamic causal modeling, The bidirectional communication theory: a generalization of information theory, vol.21, pp.114-129, 1973.

J. Niessing, B. Ebisch, K. E. Schmidt, M. Niessing, W. Singer et al., Coupling between neuronal firing rate, gamma LFP, and BOLD fMRI is related to interneuronal correlations, CrossRef Medline Nir Y, vol.309, pp.1275-1285, 2005.

G. Nolte, G. A. ;-crossref-medline-ojemann, J. Ojemann, and N. F. Ramsey, Relation between functional magnetic resonance imaging (fMRI) and single neuron, local field potential (LFP) and electrocorticography (ECoG) activity in human cortex, Causality: models, reasoning and inference, vol.48, pp.103-113, 2000.

D. B. Percival and A. T. Walden, Spectral analysis for physical applications, 1993.

B. Pesaran, J. S. Pezaris, M. Sahani, P. P. Mitra, and R. A. Andersen, Temporal structure in neuronal activity during working memory in macaque parietal cortex, The frontal lobes revisited (Perecma E, ed), vol.5, pp.91-108, 2002.

M. Petrides, Differences in gamma frequencies across visual cortex restrict their possible use in computation, Lateral prefrontal cortex: architectonic and functional organization, vol.360, pp.1-23, 1991.

K. R. Ridderinkhof, M. Ullsperger, E. A. Crone, S. Nieuwenhuis, A. J. Crossref-medline-rilk et al., Neuronal dynamics underlying high-and low-frequency EEG oscillations contribute independently to the human BOLD signal, The role of the medial frontal cortex in cognitive control, vol.306, pp.115-144, 1987.

B. D. Van-veen, W. Van-drongelen, M. Yuchtman, and A. Suzuki, Localization of brain electrical activity via linearly constrained minimum variance spatial filtering, IEEE Trans Biomed Eng, vol.44, pp.867-880, 1997.

R. Vicente, M. Wibral, M. Lindner, G. Pipa, J. R. Vidal et al., Visual grouping and the focusing of attention induce gamma-band oscillations at different frequencies in human magnetoencephalogram signals, CrossRef Medline Wibral M, Vicente R, Lindner M, vol.30, pp.3-36, 2006.

S. P. Wise, E. Murray, S. P. Wise, G. Pellegrino, D. Boussaoud et al., Premotor and parietal cortex: corticocortical connectivity and combinatorial computations, CrossRef Medline Zalesky A, vol.23, pp.10341-10346, 1996.