Advances in Psychological Science ›› 2019, Vol. 27 ›› Issue (2): 312-321.doi: 10.3724/SP.J.1042.2019.00312
• Regular Articles • Previous Articles Next Articles
LIU Haoran1, ZHANG Chenfeng1, YANG Li1,2()
Received:
2017-11-13
Online:
2019-02-15
Published:
2018-12-25
Contact:
YANG Li
E-mail:yang_li@m.scnu.edu.cn
CLC Number:
LIU Haoran, ZHANG Chenfeng, YANG Li. The neural mechanism underlying resilience[J]. Advances in Psychological Science, 2019, 27(2): 312-321.
1 | 刘伟伟, 汪海彬, 李梅, 黄丽 . ( 2017). 心理弹性的国内外研究回顾及展望. 宁波大学学报(教育科学版), 39( 1), 18-23. |
2 | 马伟娜, 桑标, 洪灵敏 . ( 2008). 心理弹性及其作用机制的研究述评. 华东师范大学学报(教育科学版) 26( 1), 89-96. |
3 | 席居哲, 左志宏 Wei,W. , (2012). 心理韧性研究诸进路. 心理科学进展, 20( 9), 1426-1447. |
4 |
于肖楠, 张建新 . ( 2005). 韧性(resilience)——在压力下复原和成长的心理机制. 心理科学进展, 13( 5), 658-665.
doi: 10.3969/j.issn.1671-3710.2005.05.016 URL |
5 | 朱清, 范方, 郑裕鸿, 孙仕秀, 张露, 田卫卫 . ( 2012). 心理弹性在负性生活事件和抑郁症状之间的中介和调节: 以汶川地震后的青少年为例. 中国临床心理学杂志, 20( 4), 514-517. |
6 |
Adamec R., Toth M., Haller J., Halasz J., & Blundell J . ( 2012). A comparison of activation patterns of cells in selected prefrontal cortical and amygdala areas of rats which are more or less anxious in response to predator exposure or submersion stress. Physiology & Behavior, 105( 3), 628-638.
doi: 10.1016/j.physbeh.2011.09.016 URL pmid: 21971366 |
7 |
Alves N. D., Correia J. S., Patrício P., Mateus-Pinheiro A., Machado-Santos A. R., Loureiro-Campos E., .. Pinto L . ( 2017). Adult hippocampal neuroplasticity triggers susceptibility to recurrent depression. Translational Psychiatry, 7( 3), e1058.
doi: 10.1038/tp.2017.29 URL pmid: 5416672 |
8 |
Anacker C., Scholz J., O'Donnell K. J., Allemang-Grand R., Diorio J., Bagot R. C., .. Meaney M. J . ( 2016). Neuroanatomic differences associated with stress susceptibility and resilience. Biological Psychiatry, 79( 10), 840-849.
doi: 10.1016/j.biopsych.2015.08.009 URL pmid: 26422005 |
9 |
Bagot R. C., Parise E. M., Peñna C. J., Zhang H-X., Maze I., Chaudhury D., .. Nestler E. J . ( 2015). Ventral hippocampal afferents to the nucleus accumbens regulate susceptibility to depression. Nature Communications, 6, 7062.
doi: 10.1038/ncomms8062 URL pmid: 4430111 |
10 |
Berton O., Covington H. E., Ebner K., Tsankova N. M., Carle T. L., Ulery P., .. Nestler E. J . ( 2007). Induction of delta FosB in the periaqueductal gray by stress promotes active coping responses. Neuron, 56( 3), 574-574.
doi: 10.1016/j.neuron.2007.06.033 URL pmid: 17640529 |
11 |
Brachman R. A., McGowan J. C., Perusini J. N., Lim S. C., Pham T. H., Faye C., .. Denny C. A . ( 2016). Ketamine as a prophylactic against stress-induced depressive-like behavior. Biological Psychiatry, 79( 9), 776-786.
doi: 10.1016/j.biopsych.2015.04.022 URL pmid: 4633406 |
12 |
Burt K. B., Whelan R., Conrod P. J., Banaschewski T., Barker G. J., Bokde A. L. W., .. Consortium I . ( 2016). Structural brain correlates of adolescent resilience. Journal of Child Psychology and Psychiatry, 57( 11), 1287-1296.
doi: 10.1111/jcpp.12552 URL pmid: 27079174 |
13 |
Cao J.-L., Covington H. E., Friedman A. K., Wilkinson M. B., Walsh J. J., Cooper D. C., .. Han M.-H . ( 2010). Mesolimbic dopamine neurons in the brain reward circuit mediate susceptibility to social defeat and antidepressant action. Journal Of Neuroscience, 30( 49), 16453-16458.
doi: 10.1523/JNEUROSCI.3177-10.2010 URL |
14 |
Chandler D. J., Lamperski C. S., & Waterhouse B. D . ( 2013). Identification and distribution of projections from monoaminergic and cholinergic nuclei to functionally differentiated subregions of prefrontal cortex. Brain Research, 1522, 38-58.
doi: 10.1016/j.brainres.2013.04.057 URL pmid: 23665053 |
15 |
Chang C-H. & Grace, A.A . ( 2014). Amygdala-ventral pallidum pathway decreases dopamine activity after chronic mild stress in rats. Biological Psychiatry, 76( 3), 223-230.
doi: 10.1016/j.biopsych.2013.09.020 URL pmid: 24209776 |
16 |
Chaudhury D., Walsh J. J., Friedman A. K., Juarez B., Ku S. M., Koo J. W., .. Han M-H . ( 2013). Rapid regulation of depression-related behaviours by control of midbrain dopamine neurons. Nature, 49( 7433), 532-536.
doi: 10.1038/nature11713 URL pmid: 3554860 |
17 |
Covington. H. E., Lobo M. K., Maze I., Vialou V., Hyman J. M., Zaman S., .. Nestler E. J . ( 2010). Antidepressant effect of optogenetic stimulation of the medial prefrontal cortex. Journal of Neuroscience, 30( 48), 16082-16090.
doi: 10.1523/JNEUROSCI.1731-10.2010 URL |
18 |
Diorio D., Viau V., & Meaney M. J . ( 1993). The role of the medial prefrontal cortex (cingulate gyrus) in the regulation of hypothalamic-pituitary-adrenal responses to stress. The Journal of Neuroscience, 13( 9), 3839-3847.
doi: 10.1097/00005072-199309000-00012 URL pmid: 8396170 |
19 |
Drevets W. C., Savitz J., & Trimble M . ( 2008). The subgenual anterior cingulate cortex in mood disorders. CNS Spectr, 13( 8), 663-681.
doi: 10.1017/S1092852900013754 URL |
20 |
El Yacoubi M., Bouali S., Popa D., Naudon L., Leroux- Nicollet I., Hamon M., .. Vaugeois J. M . ( 2003). Behavioral, neurochemical, and electrophysiological characterization of a genetic mouse model of depression. Proc Natl Acad Sci USA, 100( 10), 6227-6232.
doi: 10.1073/pnas.1034823100 URL pmid: 12732720 |
21 |
Ergang P., Vodička M., Soták M., Klusoňová P., Behuliak M., Řeháková L., .. Pácha J . ( 2015). Differential impact of stress on hypothalamic-pituitary-adrenal axis: Gene expression changes in Lewis and Fisher rats. Psychoneuroendocrinology, 53, 49-59.
doi: 10.1016/j.psyneuen.2014.12.013 URL pmid: 25591115 |
22 |
Feder A., Nestler E. J., & Charney D. S . ( 2009). Psychobiology and molecular genetics of resilience. Nature Reviews Neuroscience, 10( 6), 446-457.
doi: 10.1038/nrn2649 URL |
23 |
Fletcher D. & Sarkar, M. ( 2013). Psychological resilience: A review and critique of definitions, concepts, and theory. European Psychologist, 18( 1), 12-23.
doi: 10.1027/1016-9040/a000124 URL |
24 |
Franceschelli A., Herchick S., Thelen C., Papadopoulou- Daifoti Z., & Pitychoutis P. M . ( 2014). Sex differences in the chronic mild stress model of depression. Behavioural Pharmacology, 25( 5-6), 372-383.
doi: 10.1097/FBP.0000000000000062 URL pmid: 25025701 |
25 |
Francis T. C., Chandra R., Friend D. M., Finkel E., Dayrit G., Miranda J., .. Lobo M. K . ( 2015). Nucleus accumbens medium spiny neuron subtypes mediate depression-related outcomes to social defeat stress. Biological Psychiatry, 77( 3), 212-222.
doi: 10.1016/j.biopsych.2014.07.021 URL pmid: 25173629 |
26 |
Franklin T. B., Saab B. J., & Mansuy I. M . ( 2012). Neural mechanisms of stress resilience and vulnerability. Neuron, 75( 5), 747-761.
doi: 10.1016/j.neuron.2012.08.016 URL |
27 |
Friedman, A. ( 2014). Jump-starting natural resilience reverses stress susceptibility. Science, 346( 6209), 555.
doi: 10.1126/science.1260781 URL pmid: 25359955 |
28 |
Friedman A. K., Juarez B., Ku S. M., Zhang H., Calizo R. C., Walsh J. J., .. Dietz D. M . ( 2016). KCNQ channel openers reverse depressive symptoms via an active resilience mechanism. Nature Communications, 7, 11671.
doi: 10.1038/ncomms11671 URL pmid: 27216573 |
29 |
Friedman A. K., Walsh J. J., Juarez B., Ku S. M., Chaudhury D., Wang J., .. Han M.-H . ( 2014). Enhancing depression mechanisms in midbrain dopamine neurons achieves homeostatic resilience. Science, 344( 6181), 313-319.
doi: 10.1126/science.1249240 URL |
30 |
Golden S. A., Covington Ⅲ H. E., Berton O., & Russo S. J . ( 2011). A standardized protocol for repeated social defeat stress in mice. Nat Protoc, 6( 8), 1183-1191.
doi: 10.1038/nprot.2011.361 URL pmid: 21799487 |
31 |
Grace A. A., West A., Ash B., Moore H., & Floresco S. B . ( 2003). Tonic versus phasic DA release in the nucleus accumbens is differentially regulated by pathways that selectively alter DA neuron spontaneous activity and burst firing. Schizophrenia Research, 60( 1), 106-107.
doi: 10.1016/S0920-9964(03)80844-7 URL |
32 |
Guiard B. P., El Mansari M., & Blier P . ( 2008). Cross-talk between dopaminergic and noradrenergic systems in the rat ventral tegmental area, locus ceruleus, and dorsal hippocampus. Molecular Pharmacology, 74( 5), 1463-1475.
doi: 10.1124/mol.108.048033 URL |
33 |
Haber S.N., & Knutson, B. ( 2010). The Reward Circuit: Linking Primate Anatomy and Human Imaging. Neuropsychopharmacology, 35( 1), 4-26.
doi: 10.1038/npp.2009.129 URL |
34 |
Hamani C., Mayberg H., Stone S., Laxton A., Haber S., & Lozano A. M . ( 2011). The subcallosal cingulate gyrus in the context of major depression. Biological Psychiatry, 69( 4), 301-308.
doi: 10.1016/j.biopsych.2010.09.034 URL pmid: 21145043 |
35 |
Han M.-H. & Nestler, E.J . ( 2017). Neural substrates of depression and resilience. Neurotherapeutics, 14( 3), 677-686.
doi: 10.1007/s13311-017-0527-x URL pmid: 28397115 |
36 |
Hill M. N., Hellemans K. G. C., Verma P., Gorzalka B. B., & Weinberg J . ( 2012). Neurobiology of chronic mild stress: Parallels to major depression. Neuroscience & Biobehavioral Reviews, 36( 9), 2085-2117.
doi: 10.1016/j.neubiorev.2012.07.001 URL pmid: 22776763 |
37 |
Hodes G. E., Pfau M. L., Purushothaman I., Ahn H. F., Golden S. A., Christoffel D. J., .. Russo S. J . ( 2015). Sex differences in nucleus accumbens transcriptome profiles associated with susceptibility versus resilience to subchronic variable stress. Journal of Neuroscience, 35( 50), 16362-16376.
doi: 10.1523/JNEUROSCI.1392-15.2015 URL pmid: 4679819 |
38 |
Iñiguez S. D., Riggs L. M., Nieto S. J., Dayrit G., Zamora N. N., Shawhan K. L., .. Warren B. L . ( 2014). Social defeat stress induces a depression-like phenotype in adolescent male c57BL/6 mice. Stress-the International Journal on the Biology of Stress, 17( 3), 247-255.
doi: 10.3109/10253890.2014.910650 URL pmid: 5534169 |
39 |
Isingrini E., Perret L., Rainer Q., Amilhon B., Guma E., Tanti A., .. Giros B . ( 2016). Resilience to chronic stress is mediated by noradrenergic regulation of dopamine neurons. Nature Neuroscience, 19( 4), 560-563.
doi: 10.1038/nn.4245 URL pmid: 26878672 |
40 |
Johnson D. C., Thom N. J., Stanley E. A., Haase L., Simmons A. N., Shih P. A., .. Paulus M. P . ( 2014). Modifying resilience mechanisms in at-risk individuals: A controlled study of mindfulness training in Marines preparing for deployment. Am J Psychiatry, 171( 8), 844-853.
doi: 10.1176/appi.ajp.2014.13040502 URL |
41 |
Krishnan V., Han M-H., Graham D. L., Berton O., Renthal W., Russo S. J., .. Nestler E. J . ( 2007). Molecular adaptations underlying susceptibility and resistance to social defeat in brain reward regions. Cell, 131( 2), 391-404.
doi: 10.1016/j.cell.2007.09.018 URL pmid: 17956738 |
42 |
Levone B. R., Cryan J. F., & O'Leary O. F . ( 2015). Role of adult hippocampal neurogenesis in stress resilience. Neurobiology of Stress, 1, 147-155.
doi: 10.1016/j.ynstr.2014.11.003 URL pmid: 4721321 |
43 |
Li B., Piriz J., Mirrione M., Chung C., Proulx C. D., Schulz D., .. Malinow R . ( 2011). Synaptic potentiation onto habenula neurons in the learned helplessness model of depression. Nature, 470( 7335), 535-539.
doi: 10.1038/nature09742 URL pmid: 21350486 |
44 |
Li Y., Zhong W. X., Wang D. Q., Feng Q. R., Liu Z. X., Zhou J. F., .. Luo M. M . ( 2016). Serotonin neurons in the dorsal raphe nucleus encode reward signals. Nature Communications, 7, 10503.
doi: 10.1038/ncomms10503 URL pmid: 26818705 |
45 |
Liu Z. X., Zhou J. F., Li Y., Hu F., Lu Y., Ma M., .. Luo M. M . ( 2014). Dorsal raphe neurons signal reward through 5-HT and glutamate. Neuron, 81( 6), 1360-1374.
doi: 10.1016/j.neuron.2014.02.010 URL pmid: 4411946 |
46 |
MacQueen G. M., Campbell S., McEwen B. S., Macdonald K., Amano S., Joffe R. T., .. Young L. T . ( 2003). Course of illness, hippocampal function, and hippocampal volume in major depression. Proceedings of the National Academy of Sciences of the United States of Anerica, 100( 3), 1387-1392.
doi: 10.1073/pnas.0337481100 URL pmid: 12552118 |
47 |
Martinez R. C. R., Gupta N., Lázaro-Muñoz G., Sears R. M., Kim S., Moscarello J. M., .. Cain C. K . ( 2013). Active vs. reactive threat responding is associated with differential c-Fos expression in specific regions of amygdala and prefrontal cortex. Learning & Memory, 20( 8), 446-452.
doi: 10.1101/lm.031047.113 URL pmid: 23869027 |
48 |
Masten A.S . ( 2001). Ordinary magic: Resilience processes in development. American Psychologist, 56( 3), 227-238.
doi: 10.1037/0003-066X.56.3.227 URL |
49 |
McEwen B. S., Bowles N. P., Gray J. D., Hill M. N., Hunter R. G., Karatsoreos I. N., & Nasca C . ( 2015). Mechanisms of stress in the brain. Nature Neuroscience, 18( 10), 1353-1363.
doi: 10.1038/nn.4086 URL pmid: 26404710 |
50 |
Mineur Y. S., Einstein E. B., Bentham M. P., Wigestrand M. B., Blakeman S., Newbold S. A., & Picciotto M. R . ( 2015). Expression of the 5-HT1A serotonin receptor in the hippocampus is required for social stress resilience and the antidepressant-like effects induced by the nicotinic partial agonist cytisine. Neuropsychopharmacology, 40( 4), 938-946.
doi: 10.1038/npp.2014.269 URL pmid: 25288485 |
51 |
Moscarello J.M., & LeDoux, J.E . ( 2013). Active avoidance learning requires prefrontal suppression of amygdala- mediated defensive reactions. Journal Of Neuroscience, 33( 9), 3815-3823.
doi: 10.1523/JNEUROSCI.2596-12.2013 URL pmid: 23447593 |
52 |
O’Leary O. F., Felice D., Galimberti S., Savignac H. M., Bravo J. A., Crowley T., .. Cryan J. F . ( 2014). GABAB (1) receptor subunit isoforms differentially regulate stress resilience. Proceedings of the National Academy of Sciences of the United States of America, 111( 42), 15232-15237.
doi: 10.1073/pnas.1404090111 URL pmid: 25288769 |
53 |
Razzoli M., Andreoli M., Michielin F., Quarta D., & Sokal D. M . ( 2011). Increased phasic activity of VTA dopamine neurons in mice 3 weeks after repeated social defeat. Behavioural Brain Research, 218( 1), 253-257.
doi: 10.1016/j.bbr.2010.11.050 URL |
54 |
Ressler K.J., & Mayberg, H.S . ( 2007). Targeting abnormal neural circuits in mood and anxiety disorders: From the laboratory to the clinic. Nature Neuroscience, 10( 9), 1116-1124.
doi: 10.1038/nn1944 URL |
55 |
Russo S. J., Murrough J. W., Han M. H., Charney D. S., & Nestler E. J . ( 2012). Neurobiology of resilience. Nature Neuroscience, 15( 11), 1475-1484.
doi: 10.1038/nn.3234 URL |
56 | Russo S.J., & Nestler, E.J . ( 2013). The brain reward circuitry in mood disorders. Nature Reviews Neuroscience, 14( 9), 609-625. |
57 |
Santarelli S., Zimmermann C., Kalideris G., Lesuis S. L., Arloth J., Uribe A., .. Schmidt M. V . ( 2017). An adverse early life environment can enhance stress resilience in adulthood. Psychoneuroendocrinology, 78, 213-221.
doi: 10.1016/j.psyneuen.2017.01.021 URL pmid: 28219813 |
58 |
Steimer T. & Driscoll, P. ( 2005). Inter-individual vs line/strain differences in psychogenetically selected Roman High-(RHA) and Low-(RLA) Avoidance rats: Neuroendocrine and behavioural aspects. Neuroscience & Biobehavioral Reviews, 29( 1), 99-112.
doi: 10.1016/j.neubiorev.2004.07.002 URL pmid: 0029399112 |
59 |
Tye K. M., Mirzabekov J. J., Warden M. R., Ferenczi E. A., Tsai H. C., Finkelstein J., .. Deisseroth K . ( 2013). Dopamine neurons modulate neural encoding and expression of depression-related behaviour. Nature, 493( 7433), 537-541.
doi: 10.1038/nature11740 URL pmid: 4160519 |
60 |
Vialou V., Robison A. J., Laplant Q. C., Covington Ⅲ H. E., Dietz D. M., Ohnishi Y. N., .. Nestler E. J . ( 2010). DeltaFosB in brain reward circuits mediates resilience to stress and antidepressant responses. Nature Neuroscience, 13( 6), 745-752.
doi: 10.1038/nn.2551 URL pmid: 20473292 |
61 |
Wang D. Q., Li Y., Feng Q. R., Guo Q. C., Zhou J. F., & Luo M. M . ( 2017). Learning shapes the aversion and reward responses of lateral habenula neurons. Elife, 6, e23045.
doi: 10.7554/elife.23045 URL pmid: 28561735 |
62 |
Wang M., Perova Z., Arenkiel B. R., & Li B . ( 2014). Synaptic modifications in the medial prefrontal cortex in susceptibility and resilience to stress. Journal Of Neuroscience, 34( 22), 7485-7492.
doi: 10.1523/JNEUROSCI.5294-13.2014 URL pmid: 4035514 |
63 |
Warden M. R., Selimbeyoglu A., Mirzabekov J. J., Lo M., Thompson K. R., Kim S-Y., .. Deisseroth K . ( 2012). A prefrontal cortex-brainstem neuronal projection that controls response to behavioural challenge. Nature, 492( 7429), 428-432.
doi: 10.1038/nature11617 URL pmid: 23160494 |
64 |
Zannas A. S., McQuoid D. R., Payne M. E., Steffens D. C., MacFall J. R., Ashley-Koch A., & Taylor W. D . ( 2013). Negative life stress and longitudinal hippocampal volume changes in older adults with and without depression. Journal of Psychiatric Research, 47( 6), 829-834.
doi: 10.1016/j.jpsychires.2013.02.008 URL pmid: 23478048 |
[1] | WANG Yongli, GE Shengnan, Lancy Lantin Huang, WAN Qin, LU Haidan. Neural mechanism of speech imagery [J]. Advances in Psychological Science, 2023, 31(4): 608-621. |
[2] | AN Yeqing, QI Shisan, ZENG Xiaoye, JIN Tonglin, CAO Chengxu. Family resilience theory in the risk coping context: Evolution, value and challenge [J]. Advances in Psychological Science, 2023, 31(3): 428-442. |
[3] | ZHANG Mingxia, LI Yuxin, LI Jin, LIU Xun. The influence of extrinsic and intrinsic motivation on memory in adolescents and the underlying neural mechanisms [J]. Advances in Psychological Science, 2023, 31(1): 1-9. |
[4] | WANG Songxue, CHENG Si, JIANG Ting, LIU Xun, ZHANG Mingxia. The effect of external rewards on declarative memory [J]. Advances in Psychological Science, 2023, 31(1): 78-86. |
[5] | DENG Xun, CHEN Ning, WANG Dandan, ZHAO Huanhuan, HE Wen. Neural mechanism of NSSI and comparative study with comorbidities [J]. Advances in Psychological Science, 2022, 30(7): 1561-1573. |
[6] | DENG Yao, WANG Mengmeng, RAO Hengyi. Risk-taking research based on the Balloon Analog Risk Task [J]. Advances in Psychological Science, 2022, 30(6): 1377-1392. |
[7] | LI Liang, LI Hong. Cognitive mechanism and neural basis of shyness [J]. Advances in Psychological Science, 2022, 30(5): 1038-1049. |
[8] | ZHANG Lina, XUAN Bin. Neural mechanisms and time course of the age-related word frequency effect in language production [J]. Advances in Psychological Science, 2022, 30(2): 333-342. |
[9] | LI Hehui, HUANG Huiya, DONG Lin, LUO Yuejia, TAO Wuhai. Developmental dyslexia and cerebellar abnormalities: Multiple roles of the cerebellum and causal relationships between the two [J]. Advances in Psychological Science, 2022, 30(2): 343-353. |
[10] | HU Jia-Bao, LEI Yang, DING Xian-Feng, CHENG Xiao-Rong, FAN Zhao. Shared vs. private aesthetic tastes: The cognitive and neural mechanisms [J]. Advances in Psychological Science, 2022, 30(2): 354-364. |
[11] | CHEN Qunlin, DING Ke. Serial order effect during divergent thinking: A new perspective on the dynamic mechanism of creative thought processes [J]. Advances in Psychological Science, 2022, 30(11): 2507-2517. |
[12] | WANG Yao, LUO Wenhao, HOU Liang. How do employees engage in voice behavior despite adversity? Understanding the formation and outcomes of voice resilience from the perspective of achievement goal [J]. Advances in Psychological Science, 2022, 30(11): 2395-2404. |
[13] | HUANG Jianping, XU Jingxian, WAN Xiaoang. Influence of associative learning on consumer behavior: From the perspective of product search experience [J]. Advances in Psychological Science, 2022, 30(11): 2414-2423. |
[14] | WANG Zile, ZHANG Qi. The internal mechanisms of attentional templates in facilitating visual search [J]. Advances in Psychological Science, 2022, 30(10): 2206-2218. |
[15] | LIU Wang-Juan, DING Xian-Feng, CHENG Xiao-Rong, FAN Zhao. Serial dependence effect: A novel “history effect” [J]. Advances in Psychological Science, 2022, 30(10): 2228-2239. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||