1 Phillips M R, Zhang J, Shi Q, et al. Prevalence, treatment, and associated disability of mental disorders in four provinces in China during 2001-05: an epidemiological survey. Lancet, 2009, 373: 2041-2053
[2]
2 Watts D J, Strogatz S H. Collective dynamics of ‘small-world'' networks. Nature, 1998, 393: 440-442
[3]
3 Sporns O, Tononi G, K?tter R. The human connectome: a structural description of the human brain. PLoS Comput Biol, 2005, 1: e42
[4]
4 Zhang J, Cheng W, Wang Z, et al. Pattern classification of large-scale functional brain networks: identification of informative neuroimaging markers for epilepsy. PLoS One, 2012, 7: e36733
[5]
5 He Y, Chen Z, Evans A. Structural insights into aberrant topological patterns of large-scale cortical networks in Alzheimer''s disease. J Neurosci, 2008, 28: 4756-4766
[6]
6 Cao Q, Shu N, An L, et al. Probabilistic diffusion tractography and graph theory analysis reveal abnormal white matter structural connectivity networks in drug-naive boys with attention deficit/hyperactivity disorder. J Neurosci, 2013, 33: 10676-10687
[7]
7 Biswal B B, Mennes M, Zuo X N, et al. Toward discovery science of human brain function. Proc Natl Acad Sci USA, 2010, 107: 4734-4739
[8]
8 Zuo X N, Ehmke R, Mennes M, et al. Network centrality in the human functional connectome. Cereb Cortex, 2012, 22: 1862-1875
[9]
9 Di Martino A, Yan C G, Li Q, et al. The autism brain imaging data exchange: towards a large-scale evaluation of the intrinsic brain architecture in autism. Mol Psychiatry, 2014, 19: 659-667
11 Clayden J D, Jentschke S, Mu?oz M, et al. Normative development of white matter tracts: similarities and differences in relation to age, gender, and intelligence. Cereb Cortex, 2012, 22: 1738-1747
[12]
12 Dosenbach N U, Nardos B, Cohen A L, et al. Prediction of individual brain maturity using fMRI. Science, 2010, 329: 1358-1361
[13]
13 Lebel C, Beaulieu C. Longitudinal development of human brain wiring continues from childhood into adulthood. J Neurosci, 2011, 31: 10937-10947
[14]
14 Licinio J, Wong M L. A novel conceptual framework for psychiatry: vertically and horizontally integrated approaches to redundancy and pleiotropism that co-exist with a classification of symptom clusters based on DSM-5. Mol Psychiatry, 2013, 18: 846-848
[15]
15 Cross-Disorder Group of the Psychiatric Genomics Consortium. Identification of risk loci with shared effects on five major psychiatric disorders: a genome-wide analysis. Lancet, 2013, 381: 1371-1379
[16]
16 Meyer-Lindenberg A. From maps to mechanisms through neuroimaging of schizophrenia. Nature, 2010, 468: 194-202
[17]
17 Jasny B R, Zahn L M. Genome-sequencing anniversary: a celebration of the genome, Part II. Science, 2011, 331: 689-691
[18]
18 Akil H, Brenner S, Kandel E, et al. Medicine. The future of psychiatric research: genomes and neural circuits. Science, 2010, 327: 1580-1581
[19]
19 Hamani C, Mayberg H, Stone S, et al. The subcallosal cingulate gyrus in the context of major depression. Biol Psychiat, 2011, 69: 301-308
[20]
20 Davis M. The role of the amygdala in fear and anxiety. Annu Rev Neurosci, 1992, 15: 353-375
[21]
21 Menzies L, Chamberlain S R, Laird A R, et al. Integrating evidence from neuroimaging and neuropsychological studies of obsessive-compulsive disorder: the orbitofronto-striatal model revisited. Neurosci Biobehav Rev, 2008, 32: 525-549
[22]
22 Stip E, Letourneau G. Psychotic symptoms as a continuum between normality and pathology. Can J Psychiatry, 2009, 54: 140-151
[23]
23 Allen P, Lar?i F, McGuire P K, et al. The hallucinating brain: a review of structural and functional neuroimaging studies of hallucinations. Neurosci Biobehav Rev, 2008, 32: 175-191
[24]
24 Abdul-Rahman M F, Qiu A, Woon P S, et al. Arcuate fasciculus abnormalities and their relationship with psychotic symptoms in schizophrenia. PLoS One, 2012, 7: e29315
[25]
25 Cascella N G, Gerner G J, Fieldstone S C, et al. The insula-claustrum region and delusions in schizophrenia. Schizophr Res, 2011, 133: 77-81
[26]
26 Matsui H, Nishinaka K, Oda M, et al. Hypoperfusion of the auditory and prefrontal cortices in Parkinsonian patients with verbal hallucinations. Mov Disord, 2006, 21: 2165-2169
[27]
27 Lin S H, Yu C Y, Pai M C. The occipital white matter lesions in Alzheimer''s disease patients with visual hallucinations. Clin Imaging, 2006, 30: 388-393
[28]
28 Khadka S, Meda S A, Stevens M C, et al. Is aberrant functional connectivity a psychosis endophenotype? A resting state functional magnetic resonance imaging study. Biol Psychiatry, 2013, 74: 458-466
[29]
29 Meda S A, Gill A, Stevens M C, et al. Differences in resting-state functional magnetic resonance imaging functional network connectivity between schizophrenia and psychotic bipolar probands and their unaffected first-degree relatives. Biol Psychiatry, 2012, 71: 881-889
[30]
30 Liang X, Zou Q, He Y, et al. Coupling of functional connectivity and regional cerebral blood flow reveals a physiological basis for network hubs of the human brain. Proc Natl Acad Sci USA, 2013, 110: 1929-1934
[31]
31 Tomasi D, Wang G J, Volkow N D. Energetic cost of brain functional connectivity. Proc Natl Acad Sci USA, 2013, 110: 13642-13647
[32]
32 van den Heuvel M P, Stam C J, Kahn R S, et al. Efficiency of functional brain networks and intellectual performance. J Neurosci, 2009, 29: 7619-7624
[33]
33 Wang J, Zuo X, Dai Z, et al. Disrupted functional brain connectome in individuals at risk for Alzheimer''s disease. Biol Psychiatry, 2013, 73: 472-481
[34]
34 Vallabhajosula S. Guest Editorial: new PET radiopharmaceuticals as molecular imaging probes. Semin Nucl Med, 2011, 41: 244-245
[35]
35 Yan C G, Craddock R C, Zuo X N, et al. Standardizing the intrinsic brain: towards robust measurement of inter-individual variation in 1000 functional connectomes. Neuroimage, 2013, 80: 246-262
[36]
36 Bai F, Shu N, Yuan Y, et al. Topologically convergent and divergent structural connectivity patterns between patients with remitted geriatric depression and amnestic mild cognitive impairment. J Neurosci, 2012, 32: 4307-4318
[37]
37 Zobel A, Joe A, Freymann N, et al. Changes in regional cerebral blood flow by therapeutic vagus nerve stimulation in depression: an exploratory approach. Psychiatry Res, 2005, 139: 165-179
[38]
38 Lui S, Wu Q, Qiu L, et al. Resting-state functional connectivity in treatment-resistant depression. Am J Psychiatry, 2011, 168: 642-648
[39]
39 Lui S, Li T, Deng W, et al. Short-term effects of antipsychotic treatment on cerebral function in drug-naive first-episode schizophrenia revealed by "resting state" functional magnetic resonance imaging. Arch Gen Psychiatry, 2010, 67: 783-792
[40]
40 Andreasen N C, Liu D, Ziebell S, et al. Relapse duration, treatment intensity, and brain tissue loss in schizophrenia: a prospective longitudinal MRI study. Am J Psychiatry, 2013, 170: 609-615