心理科学进展 ›› 2025, Vol. 33 ›› Issue (12): 2182-2195.doi: 10.3724/SP.J.1042.2025.2182 cstr: 32111.14.2025.2182
靳帅1,#, 刘思佳2,3,#, 李爽4, 刘志远1(
), 郭秀艳2,3
收稿日期:2024-11-23
出版日期:2025-12-15
发布日期:2025-10-27
通讯作者:
刘志远, E-mail: zyliu@snnu.edu.cn作者简介:#共同第一作者
基金资助:
JIN Shuai1,#, LIU Sijia2,3,#, LI Shuang4, LIU Zhiyuan1(
), GUO Xiuyan2,3
Received:2024-11-23
Online:2025-12-15
Published:2025-10-27
摘要:
当决策失误而错失良机时, 人们往往体验到后悔情绪。长期沉浸在后悔情绪中不仅损害心理健康, 还会使决策产生偏差。因此, 后悔情绪及其调节受到了研究者们的普遍关注。研究者们常常在实验室情境下利用任务范式对后悔情绪进行诱发, 基于决策行为、主观感受等行为学指标构建后悔情绪的认知理论, 基于脑活动、脑功能连接等神经指标探讨后悔情绪的神经机制。针对行为指标与神经指标的测量进一步证实了认知重评、注意分配、事前预期等认知调节方法与tDCS、TMS等神经调控技术在缓解后悔情绪上的有效性。未来研究可以从日常生活中后悔情绪的测量与调节、后悔情绪调节的神经振荡机制等方面进行深入探索, 在厘清后悔情绪神经机制基础上施加个性化的神经调控方法, 从而对心理健康维护和降低决策偏差等提供启示和借鉴。
中图分类号:
靳帅, 刘思佳, 李爽, 刘志远, 郭秀艳. (2025). 后悔情绪及其调节. 心理科学进展 , 33(12), 2182-2195.
JIN Shuai, LIU Sijia, LI Shuang, LIU Zhiyuan, GUO Xiuyan. (2025). Regret and its regulation. Advances in Psychological Science, 33(12), 2182-2195.
| [1] | 程利, 袁加锦, 何媛媛, 李红. (2009). 情绪调节策略:认知重评优于表达抑制. 心理科学进展, 17(4), 730-735. |
| [2] | 杜语, 何贵兵. (2013). 决策中的后悔情绪研究进展. 人类工效学, 19(1), 93-95+97. |
| [3] | 高红梅, 张燕, 许燕, 王芳. (2013). 后悔的内部发展过程:影响因素、后效及研究展望. 心理学探新, 33(2), 110-117. |
| [4] |
李丹阳, 李鹏, 李红. (2018). 反馈负波及其近10年理论解释. 心理科学进展, 26(9), 1642-1650.
doi: 10.3724/SP.J.1042.2018.01642 |
| [5] | 孙裕斌, 刘志远, 陈静, 杨光, 郭秀艳. (2019). 社会比较对象对后悔情绪波动性的影响:一项静息态fMRI研究. 磁共振成像, 10(11), 801-806. |
| [6] | 索涛, 冯廷勇, 顾本柏, 王会丽, 李红. (2011). 责任归因对“做效应”的调控及其ERP证据. 心理学报, 43(12), 1430-1440. |
| [7] | 索涛, 冯廷勇, 王会丽, 李红. (2009). 后悔的认知机制和神经基础. 心理科学进展, 17(2), 334-340. |
| [8] |
邢采, 杨苗苗. (2013). 通过注意训练调节情绪:方法及证据. 心理科学进展, 21(10), 1780-1793.
doi: 10.3724/SP.J.1042.2013.01780 |
| [9] |
杨洁敏, 张蜀, 袁加锦, 刘光远. (2015). 心理预期与认知方式对负面情绪的交互调节. 心理科学进展, 23(8), 1312-1323.
doi: 10.3724/SP.J.1042.2015.01312 |
| [10] | 岳玲云, 冯廷勇, 李森森, 李光普, 李红. (2011). 不同调控方式个体反事实思维上的差异: 来自ERP的证据. 心理学报, 43(3), 274-282. |
| [11] | 张慧君, 周立明, 罗跃嘉. (2009). 责任对后悔强度的影响:来自ERP的证据. 心理学报, 41(5), 454-463. |
| [12] | 张结海, 邓赐平. (2013). 后悔内容的影响因素研究: 基于中美的初步比较. 心理科学, 36(5), 1223-1229. |
| [13] |
赵翊馨, 史晓冉, 史慧颖. (2018). 错失选项的积极结果对责任与后悔关系的影响. 心理科学进展, 26(1), 56-61.
doi: 10.3724/SP.J.1042.2018.00056 |
| [14] |
周士人, 仇秀芙, 何振宏, 张丹丹. (2023). 基于无损脑刺激的情绪调节干预. 心理科学进展, 31(8), 1477-1495.
doi: 10.3724/SP.J.1042.2023.01477 |
| [15] |
Abendroth L. J., & Diehl K. (2006). Now or never: Effects of limited purchase opportunities on patterns of regret over time. Journal of Consumer Research, 33(3), 342-351.
doi: 10.1086/508438 URL |
| [16] | Allaert J., De Raedt R., Van der Veen F. M., Baeken C., & Vanderhasselt M. A. (2021). Prefrontal tDCS attenuates counterfactual thinking in female individuals prone to self-critical rumination. Scientific Reports, 11(1), 11601. |
| [17] |
Basanisi R., Marche K., Combrisson E., Apicella P., & Brovelli A. (2023). Beta oscillations in monkey striatum encode reward prediction error signals. Journal of Neuroscience, 43(18), 3339-3352.
doi: 10.1523/JNEUROSCI.0952-22.2023 pmid: 37015808 |
| [18] |
Bell D. E. (1982). Regret in decision making under uncertainty. Operations Research, 30(5), 961-981.
doi: 10.1287/opre.30.5.961 URL |
| [19] |
Bellalah M., Ben Amar A., & Clark E. (2024). Regret- aversion over different maturities: Application to energy futures markets. Economics Letters, 241, 111812.
doi: 10.1016/j.econlet.2024.111812 URL |
| [20] | Bjälkebring P., Västfjäll D., & Johansson B. (2013). Regulation of experienced and anticipated regret for daily decisions in younger and older adults in a Swedish one-week diary study. GeroPsych: The Journal of Gerontopsychology and Geriatric Psychiatry, 26(4), 233-241. |
| [21] |
Bjälkebring P., Västfjäll D., Svenson O., & Slovic P. (2016). Regulation of experienced and anticipated regret in daily decision making. Emotion, 16(3), 381-386.
doi: 10.1037/a0039861 pmid: 26524483 |
| [22] |
Brassen S., Gamer M., Peters J., Gluth S., & Büchel C. (2012). Don’t look back in anger! Responsiveness to missed chances in successful and nonsuccessful aging. Science, 336(6081), 612-614.
doi: 10.1126/science.1217516 URL |
| [23] |
Brechin S., & Bigrigg A. (2006). Male and female sterilisation. Current Obstetrics and Gynaecology, 16(1), 39-46.
doi: 10.1016/j.curobgyn.2005.11.002 URL |
| [24] |
Broomhall A. G., & Phillips W. J. (2024). Upward counterfactual thinking and state depression: Investigating a causal relationship. Current Psychology, 43(1), 486-501.
doi: 10.1007/s12144-023-04280-2 |
| [25] |
Broomhall A. G., Phillips W. J., Hine D. W., & Loi N. M. (2017). Upward counterfactual thinking and depression: A meta-analysis. Clinical Psychology Review, 55, 56-73.
doi: S0272-7358(16)30171-4 pmid: 28501706 |
| [26] |
Brunoni A. R., Nitsche M. A., Bolognini N., Bikson M., Wagner T., Merabet L., ... Fregni F. (2012). Clinical research with transcranial direct current stimulation (tDCS): Challenges and future directions. Brain Stimulation, 5(3), 175-195.
doi: S1935-861X(11)00026-X pmid: 22037126 |
| [27] |
Buhle J. T., Silvers J. A., Wager T. D., Lopez R., Onyemekwu C., Kober H., ... Ochsner K. N. (2013). Cognitive reappraisal of emotion: A meta-analysis of human neuroimaging studies. Cerebral Cortex, 24(11), 2981-2990.
doi: 10.1093/cercor/bht154 URL |
| [28] | Butz M. V. (2008). How and why the brain lays the foundations for a conscious self. Constructivist Foundations, 4(1), 1-14. |
| [29] |
Camille N., Coricelli G., Sallet J., Pradat-Diehl P., Duhamel J. R., & Sirigu A. (2004). The involvement of the orbitofrontal cortex in the experience of regret. Science, 304(5674), 1167-1170.
doi: 10.1126/science.1094550 pmid: 15155951 |
| [30] |
Chandrasekhar P. V. S., Capra C. M., Moore S., Noussair C., & Berns G. S. (2008). Neurobiological regret and rejoice functions for aversive outcomes. Neuroimage, 39(3), 1472-1484.
doi: 10.1016/j.neuroimage.2007.10.027 pmid: 18042401 |
| [31] |
Chua H. F., Gonzalez R., Taylor S. F., Welsh R. C., & Liberzon I. (2009). Decision-related loss: Regret and disappointment. Neuroimage, 47(4), 2031-2040.
doi: 10.1016/j.neuroimage.2009.06.006 pmid: 19524050 |
| [32] |
Connolly T., & Zeelenberg M. (2002). Regret in decision making. Current Directions in Psychological Science, 11(6), 212-216.
doi: 10.1111/1467-8721.00203 URL |
| [33] |
Coricelli G., Critchley H. D., Joffily M., O'Doherty J. P., Sirigu A., & Dolan R. J. (2005). Regret and its avoidance: A neuroimaging study of choice behavior. Nature Neuroscience, 8(9), 1255-1262.
pmid: 16116457 |
| [34] |
Coricelli G., & Rustichini A. (2010). Counterfactual thinking and emotions: Regret and envy learning. Philosophical Transactions of The Royal Society B-Biological Sciences, 365(1538), 241-247.
doi: 10.1098/rstb.2009.0159 pmid: 20026462 |
| [35] | Deng X., Sang B., Ku Y., & Sai L. (2019). Age-related differences in the late positive potential during emotion regulation between adolescents and adults. Scientific Reports, 9(1), 5738. |
| [36] |
Edmonds B. T., Laitano T., Hoffman S. M., Jeffries E., Fadel W., Bhamidipalli S. S., & Kavanaugh K. (2019). The impact of decision quality on mental health following periviable delivery. Journal of Perinatology, 39(12), 1595-1601.
doi: 10.1038/s41372-019-0403-0 pmid: 31209275 |
| [37] |
Elliott R., Dolan R. J., & Frith C. D. (2000). Dissociable functions in the medial and lateral orbitofrontal cortex: Evidence from human neuroimaging studies. Cerebral Cortex, 10(3), 308-317.
doi: 10.1093/cercor/10.3.308 pmid: 10731225 |
| [38] | Faßbender L., Krause D., & Weigelt M. (2023). Feedback processing in cognitive and motor tasks: A meta-analysis on the feedback-related negativity. Psychophysiology, 60(12), e14439. |
| [39] |
Fellows L. K., & Farah M. J. (2003). Ventromedial frontal cortex mediates affective shifting in humans: Evidence from a reversal learning paradigm. Brain: A Journal of Neurology, 126(8), 1830-1837.
doi: 10.1093/brain/awg180 URL |
| [40] |
Ferri J., Schmidt J., Hajcak G., & Canli T. (2013). Neural correlates of attentional deployment within unpleasant pictures. Neuroimage, 70, 268-277.
doi: 10.1016/j.neuroimage.2012.12.030 pmid: 23270876 |
| [41] |
Fröhlich F., & McCormick D. A. (2010). Endogenous electric fields may guide neocortical network activity. Neuron, 67(1), 129-143.
doi: 10.1016/j.neuron.2010.06.005 pmid: 20624597 |
| [42] |
Galandra C., Crespi C., Basso G., & Canessa N. (2020). Impaired learning from regret and disappointment in alcohol use disorder. Scientific Reports, 10(1), 12104.
doi: 10.1038/s41598-020-68942-y pmid: 32694573 |
| [43] |
Gilovich T., & Medvec V. H. (1994). The temporal pattern to the experience of regret. Journal of Personality and Social Psychology, 67(3), 357-365.
pmid: 7965599 |
| [44] |
Goldin P. R., Mcrae K., Ramel W., & Gross J. J. (2008). The neural bases of emotion regulation: Reappraisal and suppression of negative emotion. Biological Psychiatry, 63(6), 577-586.
doi: 10.1016/j.biopsych.2007.05.031 pmid: 17888411 |
| [45] |
Golub S. A., Gilbert D. T., & Wilson T. D. (2009). Anticipating one's troubles: The costs and benefits of negative expectations. Emotion, 9(2), 277-281.
doi: 10.1037/a0014716 pmid: 19348540 |
| [46] |
Guerini R., FitzGibbon L., & Coricelli G. (2020). The role of agency in regret and relief in 3- to 10-year-old children. Journal of Economic Behavior and Organization, 179, 797-806.
doi: 10.1016/j.jebo.2020.03.029 URL |
| [47] |
Guex R., Meaux E., Mégevand P., Domínguez-Borràs J., Seeck M., & Vuilleumier P. (2023). Frequency-specific gaze modulation of emotional face processing in the human amygdala. Cerebral Cortex, 33(8), 4859-4869.
doi: 10.1093/cercor/bhac385 URL |
| [48] | Gundlach C., Moratti S., Forschack N., & Müller M. M. (2020). Spatial attentional selection modulates early visual stimulus processing independently of visual alpha modulations. Cerebral Cortex, 30(6), 3686-3703. |
| [49] |
Ikink I., Engelman J. B., van den Bos W., Roelofs K., & Figner B. (2019). Time ambiguity during intertemporal decision-making is aversive, impacting choice and neural value coding. Neuroimage, 185, 236-244.
doi: S1053-8119(18)31967-0 pmid: 30296559 |
| [50] |
Jeurissen D., Sack A. T., Roebroeck A., Russ B. E., & Pascual-Leone A. (2014). TMS affects moral judgment, showing the role of DLPFC and TPJ in cognitive and emotional processing. Frontiers in Neuroscience, 8, 18.
doi: 10.3389/fnins.2014.00018 pmid: 24592204 |
| [51] | John O. P., & Gross J. J. (2007). Individual Differences in Emotion Regulation. In J. J. Gross (Ed.), Handbook of emotion regulation (pp. 351-372). The Guilford Press. |
| [52] |
Kahneman D., & Miller D. T. (1986). Norm theory: Comparing reality to its alternatives. Psychological Review, 93(2), 136-153.
doi: 10.1037/0033-295X.93.2.136 URL |
| [53] |
Kahneman D., & Tversky A. (1982). The psychology of preferences. Scientific American, 246(1), 160-173.
doi: 10.1038/scientificamerican0182-160 URL |
| [54] | Khoudary A., O'Neill K., Faul L., Murray S., Smallman R., & De Brigard F. (2022). Neural differences between internal and external episodic counterfactual thoughts. Philosophical Transactions of the Royal Society B: Biological Sciences, 377(1866), 20210337. |
| [55] |
Klawohn J., Joyner K., Santopetro N., Brush C. J., & Hajcak G. (2022). Depression reduces neural correlates of reward salience with increasing effort over the course of the progressive ratio task. Journal of Affective Disorders, 307, 294-300.
doi: 10.1016/j.jad.2022.03.051 URL |
| [56] |
Leuchter A. F., Wilson A. C., Vince-Cruz N., & Corlier J. (2021). Novel method for identification of individualized resonant frequencies for treatment of Major Depressive Disorder (MDD) using repetitive Transcranial Magnetic Stimulation (rTMS): A proof-of-concept study. Brain Stimulation, 14(5), 1373-1383.
doi: 10.1016/j.brs.2021.08.011 pmid: 34425244 |
| [57] |
Li L., Liu Z., Niu H., Zheng L., Cheng X., Sun P., ... Guo X. (2018). Responsibility modulates the neural correlates of regret during the sequential risk-taking task. Experimental Brain Research, 236(3), 679-689.
doi: 10.1007/s00221-017-5165-3 pmid: 29299641 |
| [58] |
Li S., Li S., Ding T., Liu S., Guo X., & Liu Z. (2024). Effects of attentional deployment training for relieving negative emotion in individuals with subthreshold depression. Clinical Neurophysiology, 165, 97-106.
doi: 10.1016/j.clinph.2024.06.009 pmid: 38996613 |
| [59] |
Li S., Liu S., Huang P., Liu S., Zhang W., Guo X., & Liu Z. (2021). The modulation of attentional deployment on regret: An event-related potential study. NeuroReport, 32(7), 621-630.
doi: 10.1097/WNR.0000000000001640 pmid: 33850091 |
| [60] | Li Z., Zhang W., Du Y. J., Zhu W. L., & Soo M. (2024). The impact of anger on intertemporal decision-making in individuals with internet addiction: An fNIRS study. European Archives of Psychiatry and Clinical Neuroscience. https://doi.org/10.1007/s00406-024-01882-0 |
| [61] | Liu J., Liu Y., Yu L., Cao Y., Wang Y., Miao Y., & Jiao L. (2024). Network analysis of comorbid depression and anxiety and their associations with friendship among adolescents. Current Psychology, 43(28), 1-14. |
| [62] | Liu Q., Zhao Y., Attanti S., Voss J. L., Schoenbaum G., & Kahnt T. (2024). Midbrain signaling of identity prediction errors depends on orbitofrontal cortex networks. Nature Communications, 15(1), 1704. |
| [63] |
Liu S., Li S., Jiang H., Zhang Z., Gong Y., Guo X., & Liu Z. (2023). The neural correlates underlying the regulation of anticipation on regret. Behavioural Brain Research, 436, 114075.
doi: 10.1016/j.bbr.2022.114075 URL |
| [64] |
Liu S., Lu Y., Li S., Huang P., Li L., Liu S., ... Guo X. (2022). Resting-state functional connectivity within orbitofrontal cortex and inferior frontal gyrus modulates the relationship between reflection level and risk-taking behavior in internet gaming disorder. Brain Research Bulletin, 178, 49-56.
doi: 10.1016/j.brainresbull.2021.10.019 URL |
| [65] |
Liu X., Powell D. K., Wang H., Gold B. T., Corbly C. R., & Joseph J. E. (2007). Functional dissociation in frontal and striatal areas for processing of positive and negative reward information. Journal of Neuroscience, 27(17), 4587-4597.
doi: 10.1523/JNEUROSCI.5227-06.2007 pmid: 17460071 |
| [66] |
Liu Z., Cheng X., Liu S., Zhang Z., Li S., Li L., & Guo X. (2020). Attentional deployment training impacts neural responses to subsequent regret. International Journal of Psychophysiology, 157, 23-31.
doi: S0167-8760(20)30194-X pmid: 32898534 |
| [67] | Liu Z., Huang P., Gong Y., Wang Y., Wu Y., Wang C., & Guo X. (2021). Altered neural responses to missed chance contribute to the risk-taking behaviour in individuals with Internet gaming disorder. Addiction Biology, 27(2), e13124. |
| [68] |
Liu Z., Li L., Liu S., Sun Y., Li S., Yi M., ... Guo X. (2020). Reduced feelings of regret and enhanced fronto- striatal connectivity in elders with long-term Tai Chi experience. Social Cognitive and Affective Neuroscience, 15(8), 861-873.
doi: 10.1093/scan/nsaa111 URL |
| [69] |
Liu Z., Li L., Zheng L., Hu Z., Roberts I. D., Guo X., & Yang G. (2016). The neural basis of regret and relief during a sequential risk-taking task. Neuroscience, 327, 136-145.
doi: 10.1016/j.neuroscience.2016.04.018 pmid: 27102420 |
| [70] |
Liu Z., Li L., Zheng L., Xu M., Zhou F. A., & Guo X. (2017). Attentional deployment impacts neural response to regret. Scientific Reports, 7, 41374.
doi: 10.1038/srep41374 pmid: 28145480 |
| [71] |
Liu Z., Liu S., Li S., Li L., Zheng L., Weng X., ... You X. (2022). Dissociating value-based neurocomputation from subsequent selection-related activations in human decision- making. Cerebral Cortex, 32(19), 4141-4155.
doi: 10.1093/cercor/bhab471 URL |
| [72] |
Liu Z., Wu Y., Li L., & Guo X. (2018). Functional connectivity within the executive control network mediates the effects of long-term Tai Chi exercise on elders’ emotion regulation. Frontiers in Aging Neuroscience, 10, 315.
doi: 10.3389/fnagi.2018.00315 URL |
| [73] |
Liu Z., Zhang Z., Liu Z., Li S., & Liu S. (2023). Altered neural correlates of optimal decision-making in individuals with depressive status. Biological Psychology, 176, 108462.
doi: 10.1016/j.biopsycho.2022.108462 URL |
| [74] |
Liu Z., Zheng L., Li L., Xu J., Cheng X., Guo X., ... Xu M. (2018). Social comparison modulates the neural responses to regret and subsequent risk-taking behavior. Social Cognitive and Affective Neuroscience, 13(10), 1059-1070.
doi: 10.1093/scan/nsy066 pmid: 30371903 |
| [75] |
Lobier M., Siebenhühner F., Palva S., & Palva J. M. (2014). Phase transfer entropy: A novel phase-based measure for directed connectivity in networks coupled by oscillatory interactions. Neuroimage, 85, 853-872.
doi: 10.1016/j.neuroimage.2013.08.056 URL |
| [76] |
Loomes G., & Sugden R. (1982). Regret theory: An alternative theory of rational choice under uncertainty. The Economic Journal, 92(368), 805-824.
doi: 10.2307/2232669 URL |
| [77] |
Lu Y., Guo X. Y., Weng X., Jiang H. R., Yan H. D., Shen X. T., ... Gao J. H. (2023). Theta signal transfer from parietal to prefrontal cortex ignites conscious awareness of implicit knowledge during sequence learning. Journal of Neuroscience, 43(40), 6760-6778.
doi: 10.1523/JNEUROSCI.2172-22.2023 pmid: 37607820 |
| [78] |
Manera V., Samson A. C., Pehrs C., Lee I. A., & Gross J. J. (2014). The eyes have it: The role of attention in cognitive reappraisal of social stimuli. Emotion, 14(5), 833-839.
doi: 10.1037/a0037350 pmid: 25046244 |
| [79] | Marciano D., Staveland B. R., Lin J. J., Saez I., Hsu M., & Knight R. T. (2023). Electrophysiological signatures of inequity-dependent reward encoding in the human OFC. Cell Reports, 42(8), 112865. |
| [80] |
Matarazzo O., Abbamonte L., Greco C., Pizzini B., & Nigro G. (2021). Regret and other emotions related to decision-making: Antecedents, appraisals, and phenomenological aspects. Frontiers in Psychology, 12, 783248.
doi: 10.3389/fpsyg.2021.783248 URL |
| [81] |
McCloy R. A., & Byrne R. M. (2002). Semifactual “even if” thinking. Thinking and Reasoning, 8(1), 41-67.
doi: 10.1080/13546780143000125 URL |
| [82] |
McCormack T., Feeney A., & Beck S. R. (2020). Regret and decision-making: A developmental perspective. Current Directions in Psychological Science, 29(4), 346-350.
doi: 10.1177/0963721420917688 URL |
| [83] |
Meissner V. H., Simson B. W., Dinkel A., Schiele S., Ankerst D. P., Lunger L., ... Herkommer K. (2023). Treatment decision regret in long-term survivors after radical prostatectomy: A longitudinal study. BJU International, 131(5), 623-630.
doi: 10.1111/bju.v131.5 URL |
| [84] |
Mellers B., Schwartz A., & Ritov I. (1999). Emotion-based choice. Journal of Experimental Psychology: General, 128(3), 332-345.
doi: 10.1037/0096-3445.128.3.332 URL |
| [85] |
N'gbala, A., & Branscombe, N. R. (1997). When does action elicit more regret than inaction and is counterfactual mutation the mediator of this effect? Journal of Experimental Social Psychology, 33(3), 324-343.
doi: 10.1006/jesp.1996.1322 URL |
| [86] |
Nicolle A., Bach D. R., Frith C., & Dolan R. J. (2011). Amygdala involvement in self-blame regret. Social Neuroscience, 6(2), 178-189.
doi: 10.1080/17470919.2010.506128 pmid: 20711938 |
| [87] |
Novemsky N., & Kahneman D. (2005). The boundaries of loss aversion. Journal of Marketing Research, 42(2), 119-128.
doi: 10.1509/jmkr.42.2.119.62292 URL |
| [88] |
Pieters R., & Zeelenberg M. (2007). A theory of regret regulation 1.1. Journal of Consumer Psychology, 17(1), 29-35.
doi: 10.1207/s15327663jcp1701_6 URL |
| [89] |
Preuschoff K., Quartz S., R, & Bossaerts P. (2008). Human insula activation reflects risk prediction errors as well as risk. Journal of Neuroscience, 28(11), 2745-2752.
doi: 10.1523/JNEUROSCI.4286-07.2008 pmid: 18337404 |
| [90] |
Ray R. D., Mcrae K., Ochsner K. N., & Gross J. J. (2010). Cognitive reappraisal of negative affect: Converging evidence from EMG and self-report. Emotion, 10(4), 587-592.
doi: 10.1037/a0019015 pmid: 20677875 |
| [91] | Roese N. J., & Olson J. M. (Eds.). (1995). What might have been: The social psychology of counterfactual thinking. Lawrence Erlbaum Associates, Inc. |
| [92] |
Roese N. J., & Summerville A. (2005). What we regret most... and why. Personality and Social Psychology Bulletin, 31(9), 1273-1285.
pmid: 16055646 |
| [93] |
Saez I., Lin J., Stolk A., Chang E., Parvizi J., Schalk G., ... Hsu M. (2018). Encoding of multiple reward-related computations in transient and sustained high-frequency activity in human OFC. Current Biology, 28(18), 2889-2899.
doi: S0960-9822(18)30975-8 pmid: 30220499 |
| [94] |
Saffrey C., Summerville A., & Roese N. J. (2008). Praise for regret: People value regret above other negative emotions. Motivation and Emotion, 32(1), 46-54.
doi: 10.1007/s11031-008-9082-4 pmid: 18535665 |
| [95] | Sage A. P., & White E. B. (1983). Decision and information structures in regret models of judgment and choice. IEEE Transactions on Systems, Man, and Cybernetics, 13(2), 136-145. |
| [96] |
Sawyers C., Straub L. K., Gauntlett J., & Bjork J. M. (2024). Developmental differences in striatal recruitment by reward prospects as a function of attentional demand. Developmental Cognitive Neuroscience, 68, 101412.
doi: 10.1016/j.dcn.2024.101412 URL |
| [97] |
Schott B. H., Minuzzi L., Krebs R. M., Elmenhorst D., Lang M., Winz O. H., ... Bauer A. (2008). Mesolimbic functional magnetic resonance imaging activations during reward anticipation correlate with reward-related ventral striatal dopamine release. Journal of Neuroscience, 28(52), 14311-14319.
doi: 10.1523/JNEUROSCI.2058-08.2008 pmid: 19109512 |
| [98] |
Sheppes G., Catran E., & Meiran N. (2008). Reappraisal (but not distraction) is going to make you sweat: Physiological evidence for self-control effort. International Journal of Psychophysiology, 71(2), 91-96.
doi: 10.1016/j.ijpsycho.2008.06.006 URL |
| [99] |
Sokolov A. A., Zeidman P., Erb M., Pollick F. E., Fallgatter A. J., Ryvlin P., ... Pavlova M. A. (2020). Brain circuits signaling the absence of emotion in body language. Proceedings of the National Academy of Sciences of the United States of America, 117(34), 20868-20873.
doi: 10.1073/pnas.2007141117 pmid: 32764147 |
| [100] | Sweis B. M., Thomas M. J., & Redish A. D. (2018). Mice learn to avoid regret. PLOS Biology, 16(6), e2005853. |
| [101] |
Tom S. M., Fox C. R., Trepel C., & Poldrack R. A. (2007). The neural basis of loss aversion in decision-making under risk. Science, 315(5811), 515-518.
doi: 10.1126/science.1134239 pmid: 17255512 |
| [102] |
van Dijk E., & Zeelenberg M. (2005). On the psychology of ‘if only’: Regret and the comparison between factual and counterfactual outcomes. Organizational Behavior and Human Decision Processes, 97(2), 152-160.
doi: 10.1016/j.obhdp.2005.04.001 URL |
| [103] |
van Reekum C. M., Urry H. L., Johnstone T., Thurow M. E., Frye C. J., Jackson C. A., ... Davidson R. J. (2007). Individual differences in amygdala and ventromedial prefrontal cortex activity are associated with evaluation speed and psychological well-being. Journal of Cognitive Neuroscience, 19(2), 237-248.
pmid: 17280513 |
| [104] |
van’t Wout M., & Silverman H. (2017). Modulating what is and what could have been: The effect of transcranial direct current stimulation on the evaluation of attained and unattained decision outcomes. Cognitive Affective and Behavioral Neuroscience, 17(6), 1176-1185.
doi: 10.3758/s13415-017-0541-9 |
| [105] |
Varma M. M., Chowdhury A., & Yu R. (2023). The road not taken: Common and distinct neural correlates of regret and relief. Neuroimage, 283, 120413.
doi: 10.1016/j.neuroimage.2023.120413 URL |
| [106] | Velioglu H. A., Dudukcu E. Z., Hanoglu L., Guntekin B., Akturk T., & Yulug B. (2024). rTMS reduces delta and increases theta oscillations in Alzheimer's disease: A visual-evoked and event-related potentials study. CNS Neuroscience and Therapeutics, 30(1), e14564. |
| [107] |
Voetterl H., Alyagon U., Middleton V. J., Downar J., Zangen A., Sack A. T., ... Arns M. (2024). Does 18 Hz deep TMS benefit a different subgroup of depressed patients relative to 10 Hz rTMS? The role of the individual alpha frequency. European Neuropsychopharmacology, 89, 73-81.
doi: 10.1016/j.euroneuro.2024.09.007 URL |
| [108] |
Vosskuhl J., Strüber D., & Herrmann C. S. (2018). Non- invasive brain stimulation: A paradigm shift in understanding brain oscillations. Frontiers in Human Neuroscience, 12, 211.
doi: 10.3389/fnhum.2018.00211 URL |
| [109] |
Wang L., Zhu T., Wang A, & Wang Y. (2024.) Transcranial direct current stimulation (tDCS) over the left dorsolateral prefrontal cortex reduced attentional bias toward natural emotional sounds. Cognitive Affective and Behavioral Neuroscience, 24(5), 881-893.
doi: 10.3758/s13415-024-01202-y |
| [110] |
Wang X., Zhang Y. H., Huang J., Wang Y., Niu Y. Z., Lui S. S. Y., ... Chan R. C. K. (2023). Revisiting reward impairments in schizophrenia spectrum disorders: A systematic review and meta-analysis for neuroimaging findings. Psychological Medicine, 53(15), 7189-7202.
doi: 10.1017/S0033291723000703 URL |
| [111] |
Wang Y., Tang Z., Zhang X., & Yang L. (2022). Auditory and cross-modal attentional bias toward positive natural sounds: Behavioral and ERP evidence. Frontiers in Human Neuroscience, 16, 949655
doi: 10.3389/fnhum.2022.949655 URL |
| [112] |
Wong K. P. (2023). A regret theory of investment timing under asymmetric information. Managerial and Decision Economics, 44(3), 1669-1677.
doi: 10.1002/mde.v44.3 URL |
| [113] |
Wu Y., van Dijk E., Li H., Aitken M., & Clark L. (2017). On the counterfactual nature of gambling near-misses: An experimental study. Journal of Behavioral Decision Making, 30(4), 855-868.
doi: 10.1002/bdm.2010 pmid: 29081596 |
| [114] |
Yu P., Lu X., Chen Y., Ye H., Zeng L., & Guo W. (2021). Modulating OFC activity with tDCS alters regret about human decision-making. Frontiers in Psychology, 12, 706962.
doi: 10.3389/fpsyg.2021.706962 URL |
| [115] |
Zeelenberg M. (1999). The use of crying over spilled milk: A note on the rationality and functionality of regret. Philosophical Psychology, 12(3), 325-340.
doi: 10.1080/095150899105800 URL |
| [116] |
Zeelenberg M., Beattie J., van der Pligt J., & de Vries N. K. (1996). Consequences of regret aversion: Effects of expected feedback on risky decision making. Organizational Behavior and Human Decision Processes, 65(2), 148-158.
doi: 10.1006/obhd.1996.0013 URL |
| [117] |
Zhang T., Zhang Q., Wu J., Wang M., Li W., Yan J., ... Li L. (2022). The critical role of the orbitofrontal cortex for regret in an economic decision-making task. Brain Structure and Function, 227(8), 2751-2767.
doi: 10.1007/s00429-022-02568-w |
| [118] |
Zhang Z., Li S., Huang P., Liu Z., Li S., Zhang J., & Liu Z. (2022). The modulation of attentional deployment on emotional sensitivity to missed opportunity in depressive individuals: An event-related potential study. Journal of Affective Disorders, 317, 29-36.
doi: 10.1016/j.jad.2022.08.077 pmid: 36030994 |
| [1] | 高可翔, 汤煜尧, 张岳瑶, 张丹丹. 内隐情绪调节的认知神经机制[J]. 心理科学进展, 2026, 34(1): 108-122. |
| [2] | 彭玉佳, 王愉茜, 鞠芊芊, 刘峰, 徐佳. 贝叶斯框架下社交焦虑的社会认知特性[J]. 心理科学进展, 2025, 33(8): 1267-1274. |
| [3] | 隋雪, 安禹思, 许艺楠, 李雨桐. 快速阅读的眼动特征、认知特点及神经机制[J]. 心理科学进展, 2025, 33(8): 1358-1366. |
| [4] | 何鸿, 张馨月, 石京鸿, 刘强. 转回努力训练对心智游移的影响及其机制探索[J]. 心理科学进展, 2025, 33(7): 1077-1090. |
| [5] | 余凌峰, 张婕, 明先超, 雷怡. 无意识恐惧及其神经机制[J]. 心理科学进展, 2025, 33(7): 1234-1245. |
| [6] | 程晓荣, 仇式明, 定险峰, 范炤. 动作如何影响元认知?——基于认知模型和神经机制的探讨[J]. 心理科学进展, 2025, 33(3): 425-438. |
| [7] | 巩芳颍, 孙逸梵, 贺琴, 石可, 刘伟, 陈宁. 教学互动中师生脑间同步性及其调节因素[J]. 心理科学进展, 2025, 33(3): 452-464. |
| [8] | 夏熠, 张婕, 张火垠, 雷怡, 窦皓然. 焦虑个体趋避冲突失调的认知神经机制[J]. 心理科学进展, 2025, 33(3): 477-493. |
| [9] | 田柳青, 陈彦霖, 林美玲, 陈栋, 王亮. 侵入式脑机接口应用:记忆的解码与调控[J]. 心理科学进展, 2025, 34(2): 191-209. |
| [10] | 孙焕翔, 张帆, 李思嘉, 张秀玲, 蒋毅. 化繁为简:视觉集合感知的神经机制[J]. 心理科学进展, 2025, 34(2): 251-270. |
| [11] | 务凯. 东方正念的心理治疗机制与神经基础[J]. 心理科学进展, 2025, 34(2): 331-347. |
| [12] | 苑墨桐, 蔡雨霏, 孙宏伟, 李妍妍, 王亮. 幻觉的神经和计算机制[J]. 心理科学进展, 2025, 33(12): 2156-2167. |
| [13] | 刘凯航, 朴忠淑, 田英, 王丽岩, 王洪彪. 从动作模仿到预测加工:运动感染的动态神经机制与实践应用图景[J]. 心理科学进展, 2025, 33(11): 1942-1956. |
| [14] | 蔡嘉琳, 陈彩琦. 认知脱离综合征的特征:与注意缺陷多动障碍等障碍的比较[J]. 心理科学进展, 2025, 33(11): 1967-1982. |
| [15] | 刘月月, 何文广. 书写认知老化发生机制及神经机理[J]. 心理科学进展, 2024, 32(9): 1502-1513. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||