专题:学科融合与设计创新

基于脑电的梦境情绪生成艺术与疗愈研究进展

  • 陈赟冰 ,
  • 王依晨
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  • 1. 清华大学美术学院,北京 100084
    2. 清华大学未来实验室,北京 100084
陈赟冰,博士后,研究方向为梦境可视化,电子信箱:ybchenfuture@mail.tsinghua.edu.cn

收稿日期: 2022-03-15

  修回日期: 2022-11-07

  网络出版日期: 2023-05-22

基金资助

国家自然科学基金项目(62172252)

Dream emotion generation art and therapy based on EEG

  • CHEN Yunbing ,
  • WANG Yichen
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  • 1. Academy of Arts & Design, Tsinghua University, Beijing 100084, China
    2. The Future Laboratory, Tsinghua University, Beijing 100084, China

Received date: 2022-03-15

  Revised date: 2022-11-07

  Online published: 2023-05-22

摘要

睡眠科学和神经科学研究已取得巨大进展,对梦的研究也有了更深入的理解,但从艺术与神经科学交叉的角度进行梦的疗愈功能的探索尚显不足。梳理了以情绪为中心的梦境疗愈功能的相关研究进展,并介绍了清华大学未来实验室进行的梦境抽象艺术形式的探索。在梦境文化和科学研究背景下,试图重新定位科学与艺术融合下梦境研究的日常实践,结合心理学、睡眠科学、艺术学的相关研究成果交叉探索,重启梦境生成艺术对健康疗愈的重要方向。

关键词:  梦境; 脑电; 疗愈

本文引用格式

陈赟冰 , 王依晨 . 基于脑电的梦境情绪生成艺术与疗愈研究进展[J]. 科技导报, 2023 , 41(8) : 83 -93 . DOI: 10.3981/j.issn.1000-7857.2023.08.008

Abstract

Over the past decades, there has been tremendous research progress in sleep science and neuroscience and a deeper understanding of dream, while the therapy function of dreams from the intersection of art and neuroscience has been deficient. This paper summarized the related research of emotion-centered dream therapy function, and introduced the visual attempt of dream abstract art form carried out by the Future Laboratory of Tsinghua University on this basis,which is also the basis of dream art therapy in the future. In the background of dream culture and scientific research, it tried to reposition the daily practice of dream research under the integration of science and art, combined the cross-exploration of related research results of psychology, sleep science and art, and restarted the significance of dream generation art research for health therapy.

Key words: dream; EEG; therapy

参考文献

[1] Freud S. Observations on the theory and practice of dream interpretation[J]. The International Journal of Psychoanalysis, 1923, 9(1): 1-11.
[2] Kavanau J L. Sleep, memory maintenance, and mental disorders[J]. The Journal of Neuropsychiatry and Clinical Neurosciences, 2000, 12(2): 199-208.
[3] Hobson J A, McCarley R W. The brain as a dream state generator: An activation-synthesis hypothesis of the dream process[J]. The American Journal of Psychiatry, 1977, 134(12): 1335-1348.
[4] Fagioli I. Mental activity during sleep[J]. Sleep Medicine Reviews, 2002, 6(4): 307-320.
[5] Marzano C, Ferrara M, Mauro F, et al. Recalling and forgetting dreams: Theta and alpha oscillations during sleep predict subsequent dream recall[J]. Journal of Neuroscience, 2011, 31(18): 6674-6683.
[6] Horikawa T, Tamaki M, Miyawaki Y, et al. Neural decoding of visual imagery during sleep[J]. Science, 2013, 340(6132): 639-642.
[7] Underwood E. How to build a dream-reading machine[J]. Science, 2013, 340(6128): 21.
[8] Huth A G, Lee T, Nishimoto S, et al. Decoding the semantic content of natural movies from human brain activity[J].Frontiers in Systems Neuroscience, 2016, 10(81), doi: 10.3389/fnsys.2016.00081.
[9] Schoch S F, Cordi M J, Schredl M, et al. The effect of dream report collection and dream incorporation on memory consolidation during sleep[J]. Journal of Sleep Research, 2019, 28(1), doi: 10.1111.
[10] Ngo H V, Martinetz T, Born J, et al. Auditory closed-loop stimulation of the sleep slow oscillation enhances memory[J]. Neuron, 2013, 78(3): 545-553.
[11] Horowitz A J H. Incubating dreams: Awakening creativity [EB/OL]. (2019-08-04) [2022-08-01]. https://www. media. mit. edu/publications/incubating-dreams-awakening-creativity.
[12] McNeal S A. The scientific study of dreams: Neural networks, cognitive development, and content analysis[J]. American Journal of Clinical Hypnosis, 2004, 46(3): 254-256.
[13] Crick F, Mitchison G. The function of dream sleep[J]. Nature, 1983, 304(5922):111-114.
[14] Walker M. Why we sleep: Unlocking the power of sleep and dreams[M]. Michigan: Scribner, 2017.
[15] Haas L F. Hans Berger (1873—1941), Richard Caton(1842—1926), and electroencephalography[J]. Journal of Neurology, Neurosurgery and Psychiatry, 2003, 74(1): 9.
[16] Aserinsky E, Kleitman N. Regularly occurring periods of eye motility, and concomitant phenomena, during sleep[J]. Science, 1953, 118(3062): 273-274.
[17] Roffwarg H P, Muzio J N , Dement W C. Ontogenetic development of human sleep-dream cycle[J]. Science, 1966, 152(3722): 604-619.
[18] Fosse R, Stickgold R, Hobson J A. Brain-mind states: Reciprocal variation in thoughts and hallucinations[J]. Psychological Science, 2001, 12 (1): 30-36.
[19] Zadra A, Stickgold R. When brains dream: Exploring the science and mystery of sleep[M]. New York: W. W. Norton & Company, 2021.
[20] Solms M. Dreaming and REM sleep are controlled by different brain mechanisms[J]. Behavioral and Brain Sciences, 2000, 23(6): 843-850.
[21] Nielsen T, Levin R. Nightmares: A new neurocognitive model[J]. Sleep Medicine Reviews, 2007, 11(4): 295-310.
[22] Perogamvros L, Schwartz S. The roles of the reward system in sleep and dreaming[J]. Neuroscience and Biobehavioral Reviews, 2012, 36(8): 1934-1951.
[23] Marquis L P, Paquette T, Blanchette-Carrière C, et al. REM sleep theta changes in frequent nightmare recallers[J]. Sleep, 2017, 40(9), doi: 10.1093.
[24] Sikka P, Revonsuo A, Noreika V, et al. EEG frontal alpha asymmetry and dream affect: Alpha oscillations over the right frontal cortex during REM sleep and presleep wakefulness predict anger in REM sleep dreams[J]. Journal of Neuroscience, 2019, 39(24): 4775-4784.
[25] Jones B E. From waking to sleeping: Neuronal and chemical substrates[J]. Trends in Pharmacological Sciences, 2005, 26(11): 578-586.
[26] Lara-Carrasco J, Nielsen T A, Solomonova E, et al. Overnight emotional adaptation to negative stimuli is altered by REM sleep deprivation and is correlated with intervening dream emotions[J]. Journal of Sleep Research, 2009, 18(2): 178-187.
[27] Vogel G W, Thurmond A, Gibbons P, et al. REM sleep reduction effects on depression syndromes[J], Archives of General Psychiatry, 1975, 32(6): 765-777.
[28] Daoust A M, Lusignan F A, Braun C M, et al. EEG correlates of emotions in dream narratives from typical young adults and individuals with autistic spectrum disorders[J]. Psychophysiology, 2008, 45(2): 299-308.
[29] De Gennaro L, Cipolli C, Cherubini A, et al. Amygdala and hippocampus volumetry and diffusivity in relation to dreaming[J]. Human Brain Mapping, 2011, 32(9): 1458-1470.
[30] Gujar N, McDonald S A, Nishida M, et al. A role for REM sleep in recalibrating the sensitivity of the human brain to specific emotions[J]. Cereb Cortex, 2011, 21(1): 115-123.
[31] Rivera-García A P, López Ruiz I E, Ramírez-Salado I, et al. Emotional facial expressions during REM sleep dreams[J]. Journal of Sleep Research, 2019, 28(1): e12716.
[32] Maranci J B, Aussel A, Vidailhet M, et al. Grumpy face during adult sleep: A clue to negative emotion during sleep? [J]. Journal of Sleep Research, 2021, 30(6): e13369.
[33] Bugalho P, Ladeira F, Barbosa R, et al. Do dreams tell the future? Dream content as a predictor of cognitive deterioration in Parkinson's disease[J]. Journal of Sleep Research, 2021, 30(3): e13163.
[34] Tsai C J, Nagata T, Liu C Y, et al. Cerebral capillary blood flow upsurge during REM sleep is mediated by A2a receptors[J]. Cell Reports, 2021, 36(7): 109558.
[35] Carr M, Haar A, Amores J, et al. Dream engineering: Simulating worlds through sensory stimulation[J]. Consciousness and Cognition, 2020, 83: 102955.
[36] Dement W, Wolpert E A. The relation of eye movements, body motility, and external stimuli to dream content[J]. Journal of Experimental Psychology, 1958, 55(6):543-553.
[37] Schredl M, Atanasova D, Hörmann K, et al. Information processing during sleep: The effect of olfactory stimuli on dream content and dream emotions[J]. Journal of Sleep Research, 2009, 18(3): 285-290.
[38] Horowitz H, Jedidiah A. Interfacing with dreams: Novel technologies and protocols for targeted dream incubation[EB/OL]. (2022-08-19)[2022-08-27].https://www.media. mit. edu/publications/interfacing-with-dreams-novel-technologies-and-protocols-for-targeted-dream-incubation/.
[39] Watson D, Clark L A. The PANAS-X: Manual for the positive and negative affect schedule-expanded form[M]. Lowa: The University of Lowa, 1999.
[40] 郭明珠, 甘怡群 . 中文正性负性情绪量表-扩展版在660 名大学生中的信效度检验[J]. 中国心理卫生杂志, 2010, 24(7): 524-528.
[41] Fox K C, Nijeboer S, Solomonova E, et al. Dreaming as mind wandering: Evidence from functional neuroimaging and first-person content reports[J]. Frontiers in Human Neuroscience, 2013, 7(412): 412.
[42] Gusnard D A, Raichle M E. Searching for a baseline: Functional imaging and the resting human brain[J]. Nature Reviews Neurosciencex, 2001, 2(10): 685-694.
[43] Spreng R N, Dimas E, Mwilambwe-Tshilobo L, et al. The default network of the human brain is associated with perceived social isolation[J]. Nature Communications, 2020, 11(1): 6393.
[44] 龙金金, 陈恒 . 孤独症谱系障碍大脑默认网络异常活动模式研究[J]. 科技风, 2021(8): 160-161.
[45] Stickgold R, Malia A, Maguire D, et al. Replaying the game: Hypnagogic images in normals and amnesics[J]. Science, 2000, 290(5490): 350-353.
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