心理科学进展 ›› 2019, Vol. 27 ›› Issue (9): 1596-1606.doi: 10.3724/SP.J.1042.2019.01596
收稿日期:
2018-09-21
出版日期:
2019-09-15
发布日期:
2019-07-24
通讯作者:
夏天生
E-mail:xiatiansheng@gdut.edu.cn
基金资助:
Received:
2018-09-21
Online:
2019-09-15
Published:
2019-07-24
Contact:
XIA Tiansheng
E-mail:xiatiansheng@gdut.edu.cn
摘要:
近年来, 随着音乐的神经科学与神经美学的发展, 逐渐形成一个新的研究领域, 即音乐的神经美学。这一研究领域关注音乐审美的心理过程和神经机制, 将注意力集中于音乐审美活动中的感知、认知和情感解释。音乐审美加工引起了相应的审美反应, 其中有三种音乐审美反应得到研究者更多的关注, 即音乐审美情绪、判断与偏好。研究者围绕这三种反应, 对音乐审美反应的知觉、认知、情绪加工和影响因素以及其神经机制展开研究。这些研究为我们理解音乐和美学的行为与神经机制提供了经验性证据。
中图分类号:
曾颖, 夏天生. (2019). 音乐的神经美学:从审美反应到神经基础. 心理科学进展 , 27(9), 1596-1606.
ZENG Ying, XIA Tiansheng. (2019). The neuroaesthetics of music: From aesthetic responses to neural bases. Advances in Psychological Science, 27(9), 1596-1606.
1 | 王丁, 王超, 李红 . ( 2018). 喜欢悲伤音乐的心理机制. 心理科学进展, 26(6), 1004-1011. |
2 | 王乃弋, 罗跃嘉, 董奇 . ( 2010). 审美的神经机制. 心理科学进展, 18(1), 19-27. |
3 | Alluri V., Toiviainen P., Jääskeläinen I. P., Glerean E., Sams M., & Brattico E . ( 2012). Large-scale brain networks emerge from dynamic processing of musical timbre, key and rhythm. NeuroImage, 59(4), 3677-3689. |
4 | Altenmüller E., Schürmann K., Lim V. K., & Parlitz D . ( 2002). Hits to the left, flops to the right: Different emotions during listening to music are reflected in cortical lateralisation patterns. Neuropsychologia, 40(13), 2242-2256. |
5 | Anglada-Tort M., Steffens J., & Müllensiefen D . ( 2018). Names and titles matter: The impact of linguistic fluency and the affect heuristic on aesthetic and value judgements of music. Psychology of Aesthetics, Creativity, and the Arts. Advance online publication. |
6 | Barrett, F. S., & Janata, P. ( 2016). Neural responses to nostalgia-evoking music modeled by elements of dynamic musical structure and individual differences in affective traits. Neuropsychologia, 91(10), 234-246. |
7 | Berlyne, D. E . ( 1974). Studies in the new experimental aesthetics: Steps toward an objective psychology of aesthetic appreciation. Oxford, England: Hemisphere. |
8 | Blood,A. J., & Zatorre, R. J . ( 2001). Intensely pleasurable responses to music correlate with activity in brain regions implicated in reward and emotion. Proceedings of the National Academy of Sciences, 98(20), 11818-11823. |
9 | Brattico E., Alluri V., Bogert B., Jacobsen T., Vartiainen N., Nieminen S. K., & Tervaniemi M . ( 2011). A functional MRI study of happy and sad emotions in music with and without lyrics. Fronters in Psychology, 2, 308. |
10 | Brattico E., Bogert B., Alluri V., Tervaniemi M., Eerola T., & Jacobsen T . ( 2016). It's sad but I like it: The neural dissociation between musical emotions and liking in experts and laypersons. Frontiers in Human Neuroscience, 9, 676. |
11 | Brattico E., Bogert B., & Jacobsen T . ( 2013). Toward a neural chronometry for the aesthetic experience of music. Frontiers in Psychology, 4, 206. |
12 | Brattico E., Jacobsen T., De Baene W., Glerean E., & Tervaniemi M . ( 2010). Cognitive vs. affective listening modes and judgments of music-An ERP study. Biological Psychology, 85(3), 393-409. |
13 | Brattico E., Pallesen K. J., Varyagina O., Bailey C., Anourova I., Järvenpää M., .. Tervaniemi M . ( 2009). Neural discrimination of nonprototypical chords in music experts and laymen: An MEG study. Journal of Cognitive Neuroscience, 21(11), 2230-2244. |
14 | Brattico, E., & Pearce, M. ( 2013). The neuroaesthetics of music. Psychology of Aesthetics, Creativity, and the Arts, 7(1), 48-61. |
15 | Cantor,G. N . ( 1968). Children's “like-dislike” ratings of familiarized and nonfamiliarized visual stimuli. Journal of Experimental Child Psychology, 6(4), 651-657. |
16 | Costa M., Fine P., & Bitti, P. E. R . ( 2004). Interval distributions, mode, and tonal strength of melodies as predictors of perceived emotion. Music Perception: An Interdisciplinary Journal, 22(1), 1-14. |
17 | Cui A. X., Collett M. J., Troje N. F., & Cuddy L. L . ( 2015). Familiarity and preference for pitch probability profiles. Cognitive Processing, 16(2), 211-218. |
18 | Erkkilä J., Punkanen M., Fachner J., Ala-Ruona E., Pöntiö I., Tervaniemi M., .. Gold C . ( 2011). Individual music therapy for depression: Randomised controlled trial. The British Journal of Psychiatry, 199(2), 132-139. |
19 | Fan J., McCandliss B. D., Fossella J., Flombaum J. I., & Posner M. I . ( 2005). The activation of attentional networks. NeuroImage, 26(2), 471-479. |
20 | Fernández-Sotos A., Fernández-Caballero A., & Latorre J. M . ( 2016). Influence of tempo and rhythmic unit in musical emotion regulation. Frontiers in Computer Neuroscience, 10, 80. |
21 | Ferri S., Meini C., Guiot G., Tagliafico D., Gilli G., & Di Dio C . ( 2014). The effect of simple melodic lines on aesthetic experience: Brain response to structural manipulations. Advances in Neuroscience, Article ID 482126. |
22 | Flores-Gutiérrez E. O., Díaz J. L., Barrios F. A., Favila-Humara R., Guevara M. Á., del Río-Portilla Y., & Corsi-Cabrera M . ( 2007). Metabolic and electric brain patterns during pleasant and unpleasant emotions induced by music masterpieces. International Journal of Psychophysiology, 65(1), 69-84. |
23 | Foster, N. E. V., & Zatorre, R. J . ( 2010). Cortical structure predicts success in performing musical transformation judgments. NeuroImage, 53(1), 26-36. |
24 | Gabrielsson, A. (2011). Strong experiences with music: Music is much more than just music. Oxford: Oxford University Press. |
25 | Gabrielsson A. ,& Lindström, E . (2010). The role of structure in the musical expression. In P. N. Juslin, & J. Sloboda (Ed.), Handbook of music and emotion:Theory, research, applications (pp. 367-400). Oxford: Oxford University Press. |
26 | Grewe O., Kopiez R., & Altenmüüller E . ( 2009). The chill parameter: Goose bumps and shivers as promising measures in emotion research. Music Perception: An Interdisciplinary Journal, 27(1), 61-74. |
27 | Hargreaves D. J., Messerschmidt P., & Rubert C . ( 1980). Musical preference and evaluation. Psychology of Music, 8(1), 13-18. |
28 | Hargreaves D. J. ,& North, A . (2010). Experimental Aesthetics and Liking for Music. In P. N. Juslin (Ed.), Handbook of Music and Emotion: Theory, research, applications (pp. 515-546). Oxford: Oxford University Press. |
29 | Hodges D. A. (2016). The neuroaesthetics of music. In S. Hallam, I. Cross, & M. Thaut (Eds.), The oxford handbook of music psychology (pp. 247-262). Oxford: Oxford University Press. |
30 | Höfel, L., & Jacobsen, T. ( 2007). Electrophysiological indices of processing aesthetics: Spontaneous or intentional processes? International Journal of Psychophysiology, 65(1), 20-31. |
31 | Hunter P. G., Schellenberg E. G., & Schimmack U . ( 2008). Mixed affective responses to music with conflicting cues. Cognition and Emotion, 22(2), 327-352. |
32 | Huron, D. B . ( 2006). Sweet anticipation: Music and the psychology of expectation. Cambridge: MIT press. |
33 | Ishizu, T., & Zeki, S. (2011). Toward a brain-based theory of beauty. PLoS One, 6(7), e21852. |
34 | Ishizu, T., & Zeki, S. (2013). The brain's specialized systems for aesthetic and perceptual judgment. European Journal of Neuroscience, 37(9), 1413-1420. |
35 | Istók E., Brattico E., Jacobsen T., Krohn K., Müller M., & Tervaniemi M . ( 2009). Aesthetic responses to music: A questionnaire study. Musicae Scientiae, 13(2), 183-206. |
36 | Jacobsen T., Schubotz R. I., Höfel L., & Cramon, D. Y. v . (2006). Brain correlates of aesthetic judgment of beauty. NeuroImage, 29(1), 276-285. |
37 | Janata, P. (2009). The neural architecture of music-evoked autobiographical memories. Cerebral Cortex, 19(11), 2579-2594. |
38 | Juslin, P. N . ( 2013). From everyday emotions to aesthetic emotions: Towards a unified theory of musical emotions. Physics of Life Reviews, 10(3), 235-266. |
39 | Juslin, P. N., & Isaksson, S. ( 2014). Subjective criteria for choice and aesthetic judgment of music: A comparison of psychology and music students. Research Studies in Music Education, 36(2), 179-198. |
40 | Juslin, P. N., & Laukka, P. (2004). Expression, perception, and induction of musical emotions: A review and a questionnaire study of everyday listening. Journal of New Music Research, 33(3), 217-238. |
41 | Juslin P. N., Liljeström S., Västfjäll D. ,& Lundqvist, L. O (2010). How does music evoke emotions? Exploring the underlying mechanisms. In P. N. Juslin, & J. A. Sloboda (Ed.), Handbook of Music and Emotion: Theory, research, applications (pp. 605-642). Oxford: Oxford University Press. |
42 | Juslin P. N., Sakka L. S., Barradas G. T., & Liljeström S . ( 2016). No accounting for taste? Idiographic models of aesthetic judgment in music. Psychology of Aesthetics, Creativity, and the Arts, 10(2), 157-170. |
43 | Juslin, P. N., & Västfjäll, D. (2008). Emotional responses to music: The need to consider underlying mechanisms. Behavioral and Brain Sciences, 31(5), 559-575. |
44 | Karno, M., & Konečni, V. J . ( 1992). The effects of structural interventions in the first movement of Mozart's Symphony in G Minor K. 550 on aesthetic preference. Music Perception: An Interdisciplinary Journal, 10(1), 63-72. |
45 | Koelsch, S. (2011). Toward a neural basis of music perception-a review and updated model. Frontiers in Psychology, 2, 110. |
46 | Koelsch, S. (2018). Investigating the neural encoding of emotion with music. Neuron, 98(6), 1075-1079. |
47 | Koelsch S., Fritz T., von Cramon D. Y., Müller K., & Friederici A. D . ( 2006). Investigating emotion with music: An fMRI study. Human Brain Mapping, 27(3), 239-250. |
48 | Konecni, V. J .(2005). The aesthetic trinity: Awe, being moved, thrills. Bulletin of Psychology and the Arts, 5(2), 27-44. |
49 | Konieczna-Nowak, L., & Trzęsiok, M. ( 2018). Reflections on art, aesthetics, and therapeutic context in music therapy. Nordic Journal of Music Therapy, 27(4), 283-296. |
50 | Kornysheva K., von Cramon D. Y., Jacobsen T., & Schubotz R. I . ( 2010). Tuning‐in to the beat: Aesthetic appreciation of musical rhythms correlates with a premotor activity boost. Human Brain Mapping, 31(1), 48-64. |
51 | Kringelbach, M. L . ( 2005). The human orbitofrontal cortex: Linking reward to hedonic experience. Nature Reviews Neuroscience, 6(9), 691-702. |
52 | LeBlanc A., Colman J., McCrary J., Sherrill C., & Malin S . ( 1988). Tempo preferences of different age music listeners. Journal of Research in Music Education, 36(3), 156-168. |
53 | Leder H., Belke B., Oeberst A., & Augustin D . ( 2004). A model of aesthetic appreciation and aesthetic judgments. British Journal of Psychology, 95(4), 489-508. |
54 | Marin M. M., Lampatz A., Wandl M., & Leder H . ( 2016). Berlyne revisited: Evidence for the multifaceted nature of hedonic tone in the appreciation of paintings and music. Frontiers in Human Neuroscience, 10, 536. |
55 | Martínez-Molina N., Mas-Herrero E., Rodríguez-Fornells A., Zatorre R. J., & Marco-Pallarés J . ( 2016). Neural correlates of specific musical anhedonia. Proceedings of the National Academy of Sciences, 113(46), E7337-E7345. |
56 | Masataka, N. (2017). Neurodiversity, giftedness, and aesthetic perceptual judgment of music in children with autism. Frontiers in Psychology, 8, 1595. |
57 | Miller,G. A., & Buckhout, R. ( 1973). Psychology: The science of mental life. New York: Harper & Row. |
58 | Müller M., Höfel L., Brattico E., & Jacobsen T . ( 2010). Aesthetic judgments of music in experts and laypersons—An ERP study. International Journal of Psychophysiology, 76(1), 40-51. |
59 | Nadal M., Munar E., Capó M. À., Rosselló J., & Cela-Conde C. J . ( 2008). Towards a framework for the study of the neural correlates of aesthetic preference. Spatial Vision, 21(3-5), 379-396. |
60 | Nieminen S., Istók E., Brattico E., Tervaniemi M., & Huotilainen M . ( 2011). The development of aesthetic responses to music and their underlying neural and psychological mechanisms. Cortex, 47(9), 1138-1146. |
61 | Nusbaum, E. C., & Silvia, P. J . ( 2011). Shivers and timbres: Personality and the experience of chills from music. Social Psychological and Personality Science, 2(2), 199-204. |
62 | Panksepp, J. (1995). The emotional sources of “chills” induced by music. Music Perception: An Interdisciplinary Journal, 13(2), 171-207. |
63 | Panksepp, J. (2009). The emotional antecedents to the evolution of music and language. Musicae Scientiae, 13(2_suppl), 229-259. |
64 | Pereira C. S., Teixeira J., Figueiredo P., Xavier J., Castro S. L., & Brattico E . ( 2011). Music and emotions in the brain: Familiarity matters. PLoS One, 6(11), e27241. |
65 | Peretz, I. (2010). Towards a neurobiology of musical emotions. In P. Juslin, & J. Sloboda (Ed.), Handbook of Music and Emotion: Theory, research, applications (pp. 99-126). Oxford: Oxford University Press. |
66 | Raichle, M. E., & Snyder, A. Z . ( 2007). A default mode of brain function: A brief history of an evolving idea. NeuroImage, 37(4), 1083-1090. |
67 | Rauschecker, J. P . ( 2012). Ventral and dorsal streams in the evolution of speech and language. Frontiers in Evolutionary Neuroscience, 4, 7. |
68 | Reber R., Wurtz P., & Zimmermann T. D . ( 2004). Exploring “fringe” consciousness: The subjective experience of perceptual fluency and its objective bases. Consciousness and Cognition, 13(1), 47-60. |
69 | Roulston, K . (2006). Qualitative investigation of young children’s music preferences. International Journal of Education & the Arts, 7(9), 1-24. |
70 | Sachs M. E., Ellis R. J., Schlaug G., & Loui P . ( 2016). Brain connectivity reflects human aesthetic responses to music. Social Cognitive and Affective Neuroscience, 11(6), 884-891. |
71 | Salimpoor V. N., Benovoy M., Larcher K., Dagher A., & Zatorre R. J . ( 2011). Anatomically distinct dopamine release during anticipation and experience of peak emotion to music. Nature Neuroscience, 14(2), 257-261. |
72 | Salimpoor V. N., van den Bosch I., Kovacevic N., McIntosh A. R., Dagher A., & Zatorre R. J . ( 2013). Interactions between the nucleus accumbens and auditory cortices predict music reward value. Science, 340(6129), 216-219. |
73 | Salimpoor V. N., Zald D. H., Zatorre R. J., Dagher A., & McIntosh A. R . ( 2015). Predictions and the brain: How musical sounds become rewarding. Trends in Cognitive Sciences, 19(2), 86-91. |
74 | Särkämö T., Tervaniemi M., Laitinen S., Forsblom A., Soinila S., Mikkonen M., .. Hietanen M . ( 2008). Music listening enhances cognitive recovery and mood after middle cerebral artery stroke. Brain, 131(3), 866-876. |
75 | Satoh M., Takeda K., Nagata K., Shimosegawa E., & Kuzuhara S . ( 2006). Positron-emission tomography of brain regions activated by recognition of familiar music. American Journal of Neuroradiology, 27(5), 1101-1106. |
76 | Schellenberg E. G., Peretz I., & Vieillard S . ( 2008). Liking for happy-and sad-sounding music: Effects of exposure. Cognition and Emotion, 22(2), 218-237. |
77 | Scherer, K., & Zentner, M. (2008). Music evoked emotions are different-more often aesthetic than utilitarian. Behavioral and Brain Sciences, 31(5), 595-596. |
78 | Schubert, E. (2007). The influence of emotion, locus of emotion and familiarity upon preference in music. Psychology of Music, 35(3), 499-515. |
79 | Silverman M. J., Baker F. A., & MacDonald, R. A. R . ( 2016). Flow and meaningfulness as predictors of therapeutic outcome within songwriting interventions. Psychology of Music, 44(6), 1331-1345. |
80 | Skov M., Vartanian O., Martindale C., & Berleant A . ( 2018). Neuroaesthetics. New York: Routledge. |
81 | Suzuki M., Okamura N., Kawachi Y., Tashiro M., Arao H., Hoshishiba T., .. Yanai K . ( 2008). Discrete cortical regions associated with the musical beauty of major and minor chords. Cognitive, Affective, & Behavioral Neuroscience, 8(2), 126-131. |
82 | Thompson, S. (2006). Audience responses to a live orchestral concert. Musicae Scientiae, 10(2), 215-244. |
83 | Trost W., Ethofer T., Zentner M., & Vuilleumier P . ( 2011). Mapping aesthetic musical emotions in the brain. Cerebral Cortex, 22(12), 2769-2783. |
84 | Wallmark Z., Iacoboni M., Deblieck C., & Kendall R. A . ( 2018). Embodied listening and timbre: Perceptual, acoustical, and neural correlates. Music Perception: An Interdisciplinary Journal, 35(3), 332-363. |
85 | Ward M. K., Goodman J. K., & Irwin J. R . ( 2014). The same old song: The power of familiarity in music choice. Marketing Letters, 25(1), 1-11. |
86 | Wilkins R. W., Hodges D. A., Laurienti P. J., Steen M., & Burdette J. H . ( 2014). Network science and the effects of music preference on functional brain connectivity: From beethoven to eminem. Scientific Reports, 4, 6130. |
87 | Williams, M. (2017). Preference for popular and world music: A review of literature. Update: Applications of Research in Music Education, 35(3), 31-37. |
88 | Yeoh, J. P., & North, A. C . ( 2010). The effect of musical fit on consumers’ memory. Psychology of Music, 38(3), 368-378. |
89 | Zajonc, R. B . ( 1968). Attitudinal effects of mere exposure. Journal of Personality and Social Psychology, 9(2-p2), 1-27. |
90 | Zatorre, R. J., & Salimpoor, V. N . ( 2013). From perception to pleasure: Music and its neural substrates. Proceedings of the National Academy of Sciences, 110(Supplement 2), 10430-10437. |
91 | Zeki, S. (1999). Inner vision: An exploration of art and the brain. Oxford: Oxford University Press. |
92 | Zentner M., Grandjean D., & Scherer K. R . ( 2008). Emotions evoked by the sound of music: Characterization, classification, and measurement. Emotion, 8(4), 494-521. |
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