1McEwen B S. Mood disorders and allostatic load [J]. Biol Psychiat, 2003,54(3) :200-207. 被引量:1
2Harrison P J. The hippocampus in schizophrenia: a review of the neuropathological evidence and its pathophysiological implications [J]. Psychopharmacology, 2004,174(1) : 151-162. 被引量:1
3Lewis D A, Levitt P. Schizophrenia as a disorder of neurodevelopment [J]. Annu Rev Neurosci, 2002,25:409-432. 被引量:1
4Vale W, Spiess J, Rivier C, et al. Characterization of a 41-residue ovine hypothalamic peptide that stimulates secretion of corticotropin and beta-endorphin [J]. Science, 1981, 213 (4514): 1394-1397. 被引量:1
5Sawchenko P E, Imaki T, Potter E, et al. The functional neuroanatomy of corticotropin-releasing factor [J]. Ciba Found Symp, 1993,172:5-21. 被引量:1
6Brunson K L, Chen Y, Avishai-Eliner S et al. Stress and the developing hippocampus: a double-edged sword [J]? Mol Neurobiol, 2003,27(2) :121-136. 被引量:1
7Brunson K L, Eghbal-Ahmadi M, Bender R, et al. Long-term, progressive hippocampal cell loss and dysfunction induced by early-life administration of CRF reproduce the effects of early-life stress [J]. Proc Natl Acad Sci, 2001,98(15):8856-8861. 被引量:1
8Chen Y, Fenoglio K A, Dube C M, et al. Cellular and molecular mechanisms of hippocampal activation by acute stress are age-dependent [J]. Mol Psychiatry, 2006,11 ( 11 ) : 992-1002. 被引量:1
9Swanson L W, Sawchenko P E, Rivier J, et al. Organization of ovine CRF immunoreactive cells and fibers in the rat brain [J]. Neuroendocrinology, 1983,36 ( 3 ) : 165- 186. 被引量:1
10Chen Y, Bender R A, Frotscher M, et al. Novel and transient populations of CRH expressing neurons in developing hippocampus suggest unique functional roles:a quantitative spatiotemporal analysis [J]. J Neurosci, 2001,21(18):7171-7181. 被引量:1
2Lai C S, Franke T F, Gan W B. Opposite effects of fear con- ditioning and extinction on dendritic spine remodelling [J ]. Nature, 2012,483(7387): 87-91. 被引量:1
3Li N, Lee B, Liu R J, et al. mTOR-dependent synapse formation underlies the rapid antidepressant effects of NMDA antagonists[J].Science, 2010,329(5994): 959-964. 被引量:1
4Duman R S, Aghajanian G K. Synaptic dysfunction in depression potential therapeutic targets [J].Science, 2012, 338 (6103) 68-72. 被引量:1
5Lussier A L, Romay-Tallon R, Caruncho H J, et al. Altered GABAergic and glutamatergic activity within the rat hippocampus and amygdala in rats subjected to repeated corticosterone admin- istration but not restraint stress[J]. Neuroscience, 2013,231(2) : 38-48. 被引量:1
6Krishnan V, Han M H, Graham D L, et al. Molecular adap tations underlying susceptibility and resistance to social defeat in brain reward regions[J]. Cell, 2007,131(2) : 391-404. 被引量:1
7Chen G, Yang D, Yang Y, et al. Amino acid metabolic dysfun- ction revealed in the prefrontal cortex of a rat model of depression[J]. Behav Brain Res, 2015,278: 286-292. 被引量:1
8Barreto R A, Walker F R, Dunkley P R, et al. Fluoxetine prevents development of an early stress-related molecular signa ture in the rat infralimbic medial prefrontal cortex. Implications for depression? [J]. BMC Neurosci, 2012,13(125): 39-46. 被引量:1
9Quan M, Zheng C, Zhang N, et al. Impairments of behavior, information flow between thalamus and cortex, and prefrontal cortical synaptic plasticity in an animal model of depression[J]. Brain Res Bull, 2011,85(3-4) : 109-116. 被引量:1
10Maghsoudi N, Ghasemi R, Ghaempanah Z, et al. Effects of chronic restraint stress on HPA axis activity and expression of BDNF and TrkB in the hippocampus of pregnant rats: possible contribution in depression during pregnancy and postpartum period[J]. Basic Clin Neurosci, 2014,5(2): 131-137. 被引量:1