Aydore S, Pantazis D, Leahy RM (2013) A note on the phase locking value and its properties. Neuroimage 74:231–244
Barch DM, Burgess GC, Harms MP, Petersen SE, Schlaggar BL, Corbetta M, Van Essen DC (2013) Function in the human connectome: task-fMRI and individual differences in behavior. Neuroimage 80:169–189
Baria AT, Baliki MN, Parrish T, Apkarian AV (2011) Anatomical and functional assemblies of brain BOLD oscillations. J Neurosci 31(21):7910–7919
Article PubMed PubMed Central CAS Google Scholar
Basar E, Demiralp T, Schürmann M, Basar-Eroglu C, Ademoglu A (1999) Oscillatory brain dynamics, wavelet analysis, and cognition. Brain Lang 66(1):146–183
Article PubMed CAS Google Scholar
Bassett DS, Wymbs NF, Porter MA, Mucha PJ, Carlson JM, Grafton ST (2011) Dynamic reconfiguration of human brain networks during learning. Proc Natl Acad Sci 108(18):7641–7646
Article PubMed PubMed Central CAS Google Scholar
Bayram A, Karahan E, Bilgiç B, Ademoglu A, Demiralp T (2016) Achromatic temporal-frequency responses of human lateral geniculate nucleus and primary visual cortex. Vision Res 127:177–185
Behzadi Y, Restom K, Liau J, Liu TT (2007) A component based noise correction method (CompCor) for BOLD and perfusion based fMRI. Neuroimage 37(1):90–101
Betzel RF, Bassett DS (2017) Multi-scale brain networks. Neuroimage 160:73–83
Blondel VD, Guillaume JL, Lambiotte R, Lefebvre E (2008) Fast unfolding of communities in large networks. J Stat Mech: Theory Exp 2008(10):P10008
Bordier C, Nicolini C, Bifone A (2017) Graph analysis and modularity of brain functional connectivity networks: searching for the optimal threshold. Front Neurosci 11:265813
Boubela RN, Kalcher K, Huf W, Kronnerwetter C, Filzmoser P, Moser E (2013) Beyond noise: using temporal ICA to extract meaningful information from high-frequency fMRI signal fluctuations during rest. Front Hum Neurosci 7:168
Article PubMed PubMed Central Google Scholar
Burgess GC, Kandala S, Nolan D, Laumann TO, Power JD, Adeyemo B, Barch DM (2016) Evaluation of denoising strategies to address motion-correlated artifacts in resting-state functional magnetic resonance imaging data from the human connectome project. Brain Connect 6(9):669–680
Article PubMed PubMed Central Google Scholar
Buzsaki G, Draguhn A (2004) Neuronal oscillations in cortical networks. Science 304(5679):1926–1929
Article PubMed CAS Google Scholar
Canolty RT, Edwards E, Dalal SS, Soltani M, Nagarajan SS, Kirsch HE, Knight RT (2006) High gamma power is phase-locked to theta oscillations in human neocortex. Science 313(5793):1626–1628
Article PubMed PubMed Central CAS Google Scholar
Chand GB, Wu J, Hajjar I, Qiu D (2017) Interactions of the salience network and its subsystems with the default-mode and the central-executive networks in normal aging and mild cognitive impairment. Brain Connect 7(7):401–412
Article PubMed PubMed Central Google Scholar
Chen T, Cai W, Ryali S, Supekar K, Menon V (2016) Distinct global brain dynamics and spatiotemporal organization of the salience network. PLoS Biol 14(6):e1002469
Article PubMed PubMed Central Google Scholar
Cohen JR, D’Esposito M (2016) The segregation and integration of distinct brain networks and their relationship to cognition. J Neurosci 36(48):12083–12094
Article PubMed PubMed Central CAS Google Scholar
Doucet G, Naveau M, Petit L, Delcroix N, Zago L, Crivello F, Joliot M (2011) Brain activity at rest: a multiscale hierarchical functional organization. J Neurophysiol 105(6):2753–2763
Fenn DJ, Porter MA, McDonald M, Williams S, Johnson NF, Jones NS (2009) Dynamic communities in multichannel data: an application to the foreign exchange market during the 2007–2008 credit crisis. Chaos. 19(3):033119
Fornito A, Zalesky A, Bullmore E (2016) Fundamentals of brain network analysis. Academic press
Fox MD, Raichle ME (2007) Spontaneous fluctuations in brain activity observed with functional magnetic resonance imaging. Nat Rev Neurosci 8(9):700–711
Article PubMed CAS Google Scholar
Gravel N, Harvey BM, Renken RJ, Dumoulin SO, Cornelissen FW (2018) Phase-synchronization-based parcellation of resting state fMRI signals reveals topographically organized clusters in early visual cortex. Neuroimage 170:424–433
Guimera R, Amaral LAN (2005) Cartography of complex networks: modules and universal roles. J Stat Mech 2005(02):P02001
Article PubMed Central Google Scholar
Kalcher K, Boubela RN, Huf W, Bartova L, Kronnerwetter C, Derntl B, Moser E (2014) The spectral diversity of resting-state fluctuations in the human brain. PLoS One 9(4):e93375
Article PubMed PubMed Central Google Scholar
Keller CJ, Bickel S, Honey CJ, Groppe DM, Entz L, Craddock RC, Mehta AD (2013) Neurophysiological investigation of spontaneous correlated and anticorrelated fluctuations of the BOLD signal. J Neurosci 33(15):6333–6342
Article PubMed PubMed Central CAS Google Scholar
Klimm F, Borge-Holthoefer J, Wessel N, Kurths J, Zamora-López G (2014) Individual nodeʼs contribution to the mesoscale of complex networks. New J Phys 16(12):125006
Kong R, Li J, Orban C, Sabuncu MR, Liu H, Schaefer A, Yeo BT (2019) Spatial topography of individual-specific cortical networks predicts human cognition, personality, and emotion. Cereb Cortex 29(6):2533–2551
Lancichinetti A, Fortunato S (2012) Consensus clustering in complex networks. Sci Rep 2(1):336
Article PubMed PubMed Central Google Scholar
Li J, Kong R, Liégeois R, Orban C, Tan Y, Sun N, Yeo BT (2019) Global signal regression strengthens association between resting-state functional connectivity and behavior. NeuroImage 196:126–141
Liu TT, Nalci A, Falahpour M (2017) The global signal in fMRI: nuisance or information? Neuroimage 150:213–229
Ma J, Lin Y, Hu C, Zhang J, Yi Y, Dai Z (2021) Integrated and segregated frequency architecture of the human brain network. Brain Struct Funct 226:335–350
Mantini D, Perrucci MG, Del Gratta C, Romani GL, Corbetta M (2007) Electrophysiological signatures of resting state networks in the human brain. Proc Natl Acad Sci 104(32):13170–13175
Article PubMed PubMed Central CAS Google Scholar
Margulies DS, Ghosh SS, Goulas A, Falkiewicz M, Huntenburg JM, Langs G, Smallwood J (2016) Situating the default-mode network along a principal gradient of macroscale cortical organization. Proc Natl Acad Sci 113(44):12574–12579
Article PubMed PubMed Central CAS Google Scholar
Menon V, Uddin LQ (2010) Saliency, switching, attention and control: a network model of insula functi
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