[1] |
Dunn EC,Brown RC,Dai Y, et al.Genetic determinants of depression:recent findings and future directions[J]. Harv Rev Psychiatry, 2015, 23(1): 1-18.
|
[2] |
Murray CJL,Lopez AD.The Global Burden of Disease:A comprehensive assessment of mortality and disability from diseases, injuries, and risk factors in 1990 and projected to 2020[M]. Cambridge: Harward University Press, 1996.
|
[3] |
Mathers C,Ma Fat D,Boerma JT.The global burden of disease:2004 update[M]. Switzerland: World Health Organization, 2008.
|
[4] |
Mandelli L,Serrate A. Gene environment interaction studies in depression and suicidal behavior:An update[J]. Neurosis Biobehav Rev, 2013, 37(10 Pt 1): 2375-2397.
|
[5] |
Sullivan PF,Daly MJ,O’Donovan M. Genetic architectures of psychiatric disorders:the emerging picture and its implications[J]. Nat Rev Genet, 2012, 13(8): 537-551.
|
[6] |
A catalog of published genome-wide association studies.2013.
|
[7] |
Sullivan PF,de Geus EJ,Willemsen G, et al.Genome-wide association for major depressive disorder:a possible role for the presynaptic protein piccolo[J]. Mol Psychiatry, 2009, 14(4): 359-375.
|
[8] |
Aragam N,Wang KS,Pan Y. Genome-wide association analysis of gender differences in major depressive disorder in the Netherlands NESDA and NTR population-based samples[J]. J Affect Disord, 2011, 133(3): 516-521.
|
[9] |
Kohli MA,Lucae S,Saemann PG, et al.The neuronal transporter gene SLC6A15 confers risk to major depression[J]. Neuron, 2011, 70(2): 252-265.
|
[10] |
Major Depressive Disorder Working Group of the Psychiatric GWAS Consortium, Ripke S,Wray NR, et al.A mega-analysis of genome-wide association studies for major depressive disorder[J]. Mole Psychiatry, 2013, 18(4): 497-511.
|
[11] |
Hek K,Demirkan A,Lahti J, et al.A genome-wide association study of depressive symptoms[J]. Biol Psychiatry, 2013, 73(7): 667-678.
|
[12] |
Wray NR,Pergadia ML,Blackwood DH, et al.Genome-wide association study of major depressive disorder:new results, meta-analysis, and lessons learned[J]. Mol Psychiatry, 2012, 17(1): 36-48.
|
[13] |
Holmans P. Statistical methods for pathway analysis of genome-wide data for association with complex genetic traits[J]. Adv Genet, 2010(72): 141-179.
|
[14] |
Lee PH,Perlis RH,Jung JY, et al.Multi-locus genome-wide association analysis supports the role of glutamatergic synaptic transmission in the etiology of major depressive disorder[J]. Transl Psychiatry, 2012(2): e184.
|
[15] |
Matsunami K,Nishida N,Kaneko N, et al.Genome-wide association study identifies ZNF354C variants associated with depression from interferon-based therapy for chronic hepatitis C[J]. PLoS One, 2016, 11(10): e0164418.
|
[16] |
Genetics of Personality Consortium, de Moor MH,van den Berg SM, et al.Meta-analysis of genome-wide association studies for neuroticism, and the polygenic association with major depressive disorder[J]. JAMA Psychiatry, 2015, 72(7): 642-650.
|
[17] |
Power RA,Tansey KE,Buttenschøn HN, et al.Genome-wide association for major depression through age at onset stratification:Major Depressive Disorder Working Group of the Psychiatric Genomics Consortium[J]. Biol Psychiatry, 2017, 81(4): 325-335.
|
[18] |
Ye N,Rao S,Du T, et al.Intergenic variants may predispose to major depression disorder through regulation of long non-coding RNA expression[J]. Gene, 2017(601): 21-26.
|
[19] |
Demirkan A,Lahti J,Direk N, et al.Somatic, positive and negative domains of the Center for Epidemiological Studies Depression (CES-D) scale:a meta-analysis of genome-wide association studies[J]. Psychol Med, 2016, 46(8): 1613-1623.
|
[20] |
Direk N,Williams S,Smith JA, et al.An analysis of two genome-wide association meta-analyses identifies a new locus for broad depression phenotype[J]. Biol Psychiatry, 2016.[Epub ahead of print]
|
[21] |
Amin N,Belonogova NM,Jovanova O, et al.Nonsynonymous variation in NKPD1 increases depressive symptoms in the European populations[J]. Biol Psychiatry, 2017, 81(8): 702-707.
|
[22] |
Amin N,Jovanova O,Adams HH, et al.Exome-sequencing in a large population-based study reveals a rare Asn396Ser variant in the LIPG gene associated with depressive symptoms[J]. Mol Psychiatry, 2017, 22(4): 634.
|
[23] |
Wong ML,Arcos-Burgos M,Liu S, et al.The PHF21B gene is associated with major depression and modulates the stress response[J]. Mol Psychiatry, 2016.[Epub ahead of print]
|
[24] |
金立鹏,魏良洲. 从心身角度认识胃食管反流病[J/CD]. 中华诊断学电子杂志, 2016, 4(3): 173-176.
|