1. Otte C, Gold SM, Penninx BW, Pariante CM, Etkin A, Fava M, Mohr DC, Schatzberg AF (2016) Major depressive disorder. Nat Rev Dis Primers 2:16065
Varghese S, Frey BN, Schneider MA, Kapczinski F, de Azevedo Cardoso T (2022) Functional and cognitive impairment in the first episode of depression: A systematic review. Acta Psychiatr Scand 145:156–185
Knight MJ, Baune BT (2018) Cognitive dysfunction in major depressive disorder. Curr Opin Psychiatry 31:26–31
Rock PL, Roiser JP, Riedel WJ, Blackwell AD (2014) Cognitive impairment in depression: A systematic review and meta-analysis. Psychol Med 44:2029–2040
Article CAS PubMed Google Scholar
Kessler RC, Bromet EJ (2013) The epidemiology of depression across cultures. Annu Rev Public Health 34:119–138
Article PubMed PubMed Central Google Scholar
Sun X, Sun J, Lu X, Dong Q, Zhang L, Wang W, Liu J, Ma Q, Wang X, Wei D, Chen Y, Liu B, Huang CC, Zheng Y, Wu Y, Chen T, Cheng Y, Xu X, Gong Q, Si T, Qiu S, Lin CP, Cheng J, Tang Y, Wang F, Qiu J, Xie P, Li L, He Y, Group D-MW, Xia M (2023) Mapping neurophysiological subtypes of major depressive disorder using normative models of the functional connectome. Biol Psychiatry 94:936–947
Chen Q, Bi Y, Zhao X, Lai Y, Yan W, Xie L, Gao T, Xie S, Zeng T, Li J, Kuang S, Gao L, Lv Z (2022) Regional amplitude abnormities in the major depressive disorder: A resting-state fmri study and support vector machine analysis. J Affect Disord 308:1–9
Chen L, Wang Y, Niu C, Zhong S, Hu H, Chen P, Zhang S, Chen G, Deng F, Lai S, Wang J, Huang L, Huang R (2018) Common and distinct abnormal frontal-limbic system structural and functional patterns in patients with major depression and bipolar disorder. Neuroimage Clin 20:42–50
Article PubMed PubMed Central Google Scholar
Kaiser RH, Andrews-Hanna JR, Wager TD, Pizzagalli DA (2015) Large-scale network dysfunction in major depressive disorder: A meta-analysis of resting-state functional connectivity. JAMA Psychiatry 72:603–611
Article PubMed PubMed Central Google Scholar
Michel CM, Koenig T (2018) Eeg microstates as a tool for studying the temporal dynamics of whole-brain neuronal networks: A review. Neuroimage 180:577–593
Sun Q, Zhou J, Guo H, Gou N, Lin R, Huang Y, Guo W, Wang X (2021) Eeg microstates and its relationship with clinical symptoms in patients with schizophrenia. Front Psychiatry 12:761203
Soni S, Muthukrishnan SP, Samanchi R, Sood M, Kaur S, Sharma R (2019) Pre-trial and pre-response eeg microstates in schizophrenia: An endophenotypic marker. Behav Brain Res 371:111964
Damborska A, Piguet C, Aubry JM, Dayer AG, Michel CM, Berchio C (2019) Altered electroencephalographic resting-state large-scale brain network dynamics in euthymic bipolar disorder patients. Front Psychiatry 10:826
Article PubMed PubMed Central Google Scholar
Al Zoubi O, Mayeli A, Tsuchiyagaito A, Misaki M, Zotev V, Refai H, Paulus M, Bodurka J, Tulsa I (2019) Eeg microstates temporal dynamics differentiate individuals with mood and anxiety disorders from healthy subjects. Front Hum Neurosci 13:56
Article PubMed PubMed Central Google Scholar
Koenig T, Prichep L, Lehmann D, Sosa PV, Braeker E, Kleinlogel H, Isenhart R, John ER (2002) Millisecond by millisecond, year by year: Normative eeg microstates and developmental stages. Neuroimage 16:41–48
16. S AA, C S, P D, G A, Maniyan Lathikakumari A, S VT, R NM (2024) Analysis of eeg microstates as biomarkers in neuropsychological processes - review. Comput Biol Med 173:108266
Britz J, Van De Ville D, Michel CM (2010) Bold correlates of eeg topography reveal rapid resting-state network dynamics. Neuroimage 52:1162–1170
Muller TJ, Koenig T, Wackermann J, Kalus P, Fallgatter A, Strik W, Lehmann D (2005) Subsecond changes of global brain state in illusory multistable motion perception. J Neural Transm (Vienna) 112:565–576
Tarailis P, Koenig T, Michel CM, Griskova-Bulanova I (2024) The functional aspects of resting eeg microstates: A systematic review. Brain Topogr 37:181–217
Custo A, Van De Ville D, Wells WM, Tomescu MI, Brunet D, Michel CM (2017) Electroencephalographic resting-state networks: Source localization of microstates. Brain Connect 7:671–682
Article PubMed PubMed Central Google Scholar
Zappasodi F, Perrucci MG, Saggino A, Croce P, Mercuri P, Romanelli R, Colom R, Ebisch SJH (2019) Eeg microstates distinguish between cognitive components of fluid reasoning. Neuroimage 189:560–573
Seitzman BA, Abell M, Bartley SC, Erickson MA, Bolbecker AR, Hetrick WP (2017) Cognitive manipulation of brain electric microstates. Neuroimage 146:533–543
Kim K, Duc NT, Choi M, Lee B (2021) Eeg microstate features according to performance on a mental arithmetic task. Sci Rep 11:343
Article PubMed PubMed Central Google Scholar
Yan D, Liu J, Liao M, Liu B, Wu S, Li X, Li H, Ou W, Zhang L, Li Z, Zhang Y, Li L (2021) Prediction of clinical outcomes with eeg microstate in patients with major depressive disorder. Front Psychiatry 12:695272
He Y, Yu Q, Yang T, Zhang Y, Zhang K, Jin X, Wu S, Gao X, Huang C, Cui X, Luo X (2021) Abnormalities in electroencephalographic microstates among adolescents with first episode major depressive disorder. Front Psychiatry 12:775156
Murphy M, Whitton AE, Deccy S, Ironside ML, Rutherford A, Beltzer M, Sacchet M, Pizzagalli DA (2020) Abnormalities in electroencephalographic microstates are state and trait markers of major depressive disorder. Neuropsychopharmacology 45:2030–2037
Article CAS PubMed PubMed Central Google Scholar
27. Zhao Z, Niu Y, Zhao X, Zhu Y, Shao Z, Wu X, Wang C, Gao X, Wang C, Xu Y, Zhao J, Gao Z, Ding J, Yu Y (2022) Eeg microstate in first-episode drug-naive adolescents with depression. J Neural Eng 19
Lei L, Liu Z, Zhang Y, Guo M, Liu P, Hu X, Yang C, Zhang A, Sun N, Wang Y, Zhang K (2022) Eeg microstates as markers of major depressive disorder and predictors of response to ssris therapy. Prog Neuropsychopharmacol Biol Psychiatry 116:110514
Gold MC, Yuan S, Tirrell E, Kronenberg EF, Kang JWD, Hindley L, Sherif M, Brown JC, Carpenter LL (2022) Large-scale eeg neural network changes in response to therapeutic tms. Brain Stimul 15:316–325
Article PubMed PubMed Central Google Scholar
Yuan J, Li X, Zhang J, Luo L, Dong Q, Lv J, Zhao Y, Jiang X, Zhang S, Zhang W, Liu T (2018) Spatio-temporal modeling of connectome-scale brain network interactions via time-evolving graphs. Neuroimage 180:350–369
Hamilton M (1960) A rating scale for depression. J Neurol Neurosurg Psychiatry 23:56–62
Article CAS PubMed PubMed Central Google Scholar
Maier W, Buller R, Philipp M, Heuser I (1988) The hamilton anxiety scale: Reliability, validity and sensitivity to change in anxiety and depressive disorders. J Affect Disord 14:61–68
Article CAS PubMed Google Scholar
Crowe SF (1998) The differential contribution of mental tracking, cognitive flexibility, visual search, and motor speed to performance on parts a and b of the trail making test. J Clin Psychol 54:585–591
Article CAS PubMed Google Scholar
Tombaugh TN (2004) Trail making test a and b: Normative data stratified by age and education. Arch Clin Neuropsychol 19:203–214
35. A. S (1968) The symbol-digit modalities test: A neuropsychologic test of learning and other cerebral disorders. Learning Disorders 83–91
Jensen AR (1965) Scoring the Stroop test. Acta Psychol (Amst) 24:398–408
37. Poulsen AT, Pedroni A, Langer N, Hansen LK (2018) Microstate eeglab toolbox: An introductory guide. Cold Spring Harbor Laboratory
Pascual-Marqui RD, Michel CM, Lehmann D (1995) Segmentation of brain electrical activity into microstates: Model estimation and validation. IEEE Trans Biomed Eng 42:658–665
Article CAS PubMed Google Scholar
Lu F, Cui Q, Huang X, Li L, Duan X, Chen H, Pang Y, He Z, Sheng W, Han S, Chen Y, Yang Y, Luo W, Yu Y, Jia X, Tang Q, Li D, Xie A, Chen H (2020) Anomalous intrinsic connectivity within and between visual and auditory networks in major depressive disorder. Prog Neuropsychopharmacol Biol Psychiatry 100:109889
Damborska A, Tomescu MI, Honzirkova E, Bartecek R, Horinkova J, Fedorova S, Ondrus S, Michel CM (2019) Eeg resting-state large-scale brain network dynamics are related to depressive symptoms. Front Psychiatry 10:548
Article PubMed PubMed Central Google Scholar
Yang H, Chen X, Chen ZB, Li L, Li XY, Castellanos FX, Bai TJ, Bo QJ, Cao J, Chang ZK, Chen GM, Chen NX, Chen W, Cheng C, Cheng YQ, Cui XL, Duan J, Fang Y, Gong QY, Guo WB, Hou ZH, Hu L, Kuang L, Li F, Li HX, Li KM, Li T, Liu YS, Liu ZN, Long YC, Lu B, Luo QH, Meng HQ, Peng D, Qiu HT, Qiu J, Shen YD, Shi YS, Si TM, Tang YQ, Wang CY, Wang F, Wang K, Wang L, Wang X, Wang Y, Wang YW, Wu XP, Wu XR, Xie CM, Xie GR, Xie HY, Xie P, Xu XF, Yang J, Yao JS, Yao SQ, Yin YY, Yuan YG, Zang YF, Zhang AX, Zhang H, Zhang KR, Zhang L, Zhang ZJ, Zhao JP, Zhou R, Zhou YT, Zhu JJ, Zhu ZC, Zou CJ, Zuo XN, Yan CG (2021) Disrupted intrinsic functional brain topology in patients with major depressive disorder. Mol Psychiatry 26:7363–7371
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