[1] |
CHARLSON F, VAN OMMEREN M, FLAXMAN A,et al. New WHO prevalence estimates of mental disordersin conflict settings: A systematic review andmeta-analysis [J]. Lancet, 2019, 394(10194): 240-248.
|
[2] |
WHITEFORD H A, DEGENHARDT L, REHM J,et al. Global burden of disease attributable to mentaland substance use disorders: Findings from theGlobal Burden of Disease Study 2010 [J]. Lancet, 2013:382(9904): 1575-1586.
|
[3] |
MURROUGH J W, YAQUBI S, SAYED S, et al.Emerging drugs for the treatment of anxiety [J]. ExpertOpinion on Emerging Drugs, 2015, 20(3): 393-406.
|
[4] |
BANDELOW B, MICHAELIS S, WEDEKIND D.Treatment of anxiety disorders [J]. Dialogues in ClinicalNeuroscience, 2017, 19(2): 93-107.
|
[5] |
RADZIWON C D, LACKNER J M. Cognitive behavioraltherapy for IBS: How useful, how often, and howdoes it work? [J]. Current Gastroenterology Reports,2017, 19(10): 49.
|
[6] |
BANDELOWB, REITT M, R¨OVER C, et al. Efficacyof treatments for anxiety disorders: A meta analysis[J]. International Clinical Psychopharmacology, 2015,30(4): 183-192.
|
[7] |
KESSELMAN A, BERGEN M, STEFANOV D, et al.Impact of music in reducing patient anxiety during pediatricultrasound [J]. Pediatric Reports, 2016, 8(1):6349.
|
[8] |
THAUT M H. Music as therapy in early history [J].Progress in Brain Research, 2015, 217: 143-158.
|
[9] |
GERETSEGGER M, M¨OSSLER K A, BIELENINIKL, et al. Music therapy for people with schizophreniaand schizophrenia-like disorders [J]. CochraneDatabase of Systematic Reviews, 2017(5): CD004025.
|
[10] |
SATOH M, YUBA T, TABEI K, et al. Music therapyusing singing training improves psychomotor speed inpatients with Alzheimer’s disease: A neuropsychologicaland fMRI study [J]. Dementia and Geriatric CognitiveDisorders Extra, 2015, 5(3): 296-308.
|
[11] |
AALBERS S, FUSAR-POLI L, FREEMAN R E, et al.Music therapy for depression [J]. Cochrane Database ofSystematic Reviews, 2017(11): CD004517.
|
[12] |
LIN H H, CHANG Y C, CHOU H H, et al. effect ofmusic interventions on anxiety during labor: A systematicreview and meta-analysis of randomized controlledtrials [J]. Peer J, 2019, 7: e6945.
|
[13] |
BRADT J, TEAGUE A.Music interventions for dentalanxiety [J]. Oral Diseases, 2018, 24(3): 300-306.
|
[14] |
DANIEL E. Music used as anti-anxiety interventionfor patients during outpatient procedures: A review ofthe literature [J]. Complementary Therapies in ClinicalPractice, 2016, 22: 21-23.
|
[15] |
WAN A Y, BIRO M, SCOTT J F. Pharmacologic andnonpharmacologic interventions for perioperative anxietyin patients undergoing Mohs micrographic surgery:A systematic review [J]. Dermatologic Surgery, 2020,46(3): 299-304.
|
[16] |
FEYISSA A M, TATUM W O. Adult EEG[M]//Clinical neurophysiology: Basis and technical aspects.Amsterdam: Elsevier, 2019: 103-124.
|
[17] |
BAUMGARTNER C, KOREN J P. Seizure detectionusing scalp-EEG [J]. Epilepsia, 2018, 59: 14-22.
|
[18] |
DUBREUIL-VALL L, RUFFINI G, CAMPRODON JA. Deep learning convolutional neural networks discriminateadult ADHD from healthy individuals on thebasis of event-related spectral EEG [J]. Frontiers inNeuroscience, 2020, 14: 251.
|
[19] |
BI X, WANG H. Early Alzheimer’s disease diagnosisbased on EEG spectral images using deep learning [J].Neural Networks, 2019, 114: 119-135.
|
[20] |
MURASHKO A A, SHMUKLER A. EEG correlatesof face recognition in patients with schizophrenia spectrumdisorders: A systematic review [J]. Clinical Neurophysiology,2019, 130(6): 986-996.
|
[21] |
HERRMANN C S, STR¨UBER D, HELFRICH R F, etal. EEG oscillations: From correlation to causality [J].International Journal of Psychophysiology, 2016, 103:12-21.
|
[22] |
FUJIOKA T, TRAINOR L J, LARGE E W, et al.Beta and gamma rhythms in human auditory cortexduring musical beat processing [J]. Annals of the NewYork Academy of Sciences, 2009, 1169: 89-92.
|
[23] |
FACHNER J C, MAIDHOF C, GROCKE D, et al.“Telling me not to worry · · · ” Hyperscanning and neuraldynamics of emotion processing during guided imageryand music [J]. Frontiers in Psychology, 2019, 10:1561.
|
[24] |
YANG C, CHEN C, CHU H, et al. The effect of musictherapy on hospitalized psychiatric patients’ anxiety,finger temperature, and electroencephalography:A randomized clinical trial [J]. Biological Research forNursing, 2012, 14(2): 197-206.
|
[25] |
HOLE J, HIRSCH M, BALL E, et al. Music as anaid for postoperative recovery in adults: A systematicreview and meta-analysis [J]. The Lancet, 2015,386(10004): 1659-1671.
|
[26] |
HADJIDIMITRIOU S K, HADJILEONTIADIS L J.Toward an EEG-based recognition of music liking usingtime-frequency analysis [J]. IEEE Transactions onBiomedical Engineering, 2012, 59(12): 3498-3510.
|
[27] |
AFTANAS L I, REVA N V, SAVOTINA L N, et al.Neurophysiological correlates of induced discrete emotionsin humans: An individually oriented analysis [J].Neuroscience and Behavioral Physiology, 2006, 36(2):119-130.
|
[28] |
CHANG A, BOSNYAK D J, TRAINOR L J. Betaoscillatory power modulation reflects the predictabilityof pitch change [J]. Cortex, 2018, 106: 248-260.
|
[29] |
BOULTON A J, TYNER C E, CHOI S W, et al. Linkingthe GAD-7 and PHQ-9 to the TBI-QOL anxietyand depression item banks [J]. The Journal of HeadTrauma Rehabilitation, 2019, 34(5): 353-363.
|
[30] |
VAN ES M W J, SCHOFFELEN J M. Stimulusinducedgamma power predicts the amplitude of thesubsequent visual evoked response [J]. NeuroImage,2019, 186: 703-712.
|
[31] |
IKEGAYA N, MOTOI H, IIJIMA K, et al. Spatiotemporaldynamics of auditory and picture naming-relatedhigh-gamma modulations: A study of Japanesespeakingpatients [J]. Clinical Neurophysiology, 2019,130(8): 1446-1454.
|
[32] |
WITTON C, ECKERT M A, STANFORD I M, et al.The auditory evoked-gamma response and its relationwith the N1m [J]. Hearing Research, 2017, 348: 78-86.
|
[33] |
HERRMANN C S, FR¨UND I, LENZ D. Humangamma-band activity: A review on cognitive andbehavioral correlates and network models [J]. Neuroscience& Biobehavioral Reviews, 2010, 34(7): 981-992.
|
[34] |
CRADDOCK M, MARTINOVIC J, M¨ULLER M M.Early and late effects of objecthood and spatial frequencyon event-related potentials and gamma bandactivity [J]. BMC Neuroscience, 2015, 16: 6.
|
[35] |
PICKLES J O. Auditory pathways: Anatomy andphysiology [M]//The human auditory system. Amsterdam:Elsevier, 2015: 3-25.
|
[36] |
BERKOVICH-OHANA A, GLICKSOHN J, GOLDSTEINA. Mindfulness-induced changes in gammaband activity: Implications for the default mode network,self-reference and attention [J]. Clinical Neurophysiology,2012, 123(4): 700-710.
|
[37] |
THOMAS Z, NOVAK M, PLATAS S G T, et al.Brief mindfulness meditation for depression and anxietysymptoms in patients undergoing hemodialysis: Apilot feasibility study [J]. Clinical Journal of the AmericanSociety of Nephrology, 2017, 12(12): 2008-2015.
|
[38] |
LEE D J, KULUBYA E, GOLDIN P, et al. Review ofthe neural oscillations underlying meditation [J]. Frontiersin Neuroscience, 2018, 12: 178.
|
[39] |
SHADLI S M, KAWE T, MARTIN D, et al. Ketamineeffects on EEG during therapy of treatmentresistantgeneralized anxiety and social anxiety [J].International Journal of Neuropsychopharmacology,2018, 21(8): 717-724.
|
[40] |
SIMAVLI S, KAYGUSUZ I, GUMUS I, et al. Effect ofmusic therapy during vaginal delivery on postpartumpain relief and mental health [J]. Journal of AffectiveDisorders, 2014, 156: 194-199.
|
[41] |
SAMMLER D, GRIGUTSCH M, FRITZ T, et al. Musicand emotion: Electrophysiological correlates of theprocessing of pleasant and unpleasant music [J]. Psychophysiology,2007, 44(2): 293-304.
|
[42] |
BAUER A K R, KREUTZ G, HERRMANN C S. Individualmusical tempo preference correlates with EEGbeta rhythm [J]. Psychophysiology, 2015, 52(4): 600-604.
|