Page 54 - Glasbenopedagoški zbornik Akademije za glasbo v Ljubljani
P. 54

Bowling, D. L., in Purves, D. (2015). A biological rationale for musical
                   consonance. Proceedings of the National Academy of Sciences of the
                   United States of America, 112(36), 11155−11160.
               Cambridge University Press. (B. l.). Operetta. V Cambridge Advanced
                   Learner's Dictionary & Thesaurus. https://dictionary.cambridge.org
                   /dictionary/english/operetta
               Cancellieri, G., in Turrini, A. (2016). The phantom of modern opera: How
                   economics and politics affect the programming strategies of opera
                   houses. International Journal of Arts Management, 18(3), 25−36.
               Collins. (B. l.). Identification. V Collins Dictionaries. https://www
                   .collinsdictionary.com/dictionary/english/identification
               Dellacherie, D., Roy, M., Hugueville, L., Peretz, I., in Samson, S. (2011).
                   The effect of musical experience on emotional self-reportsand
                   psychophysiological responses to dissonance. Psychophysiology, 48(3),
                   337–349.
               Di Stefano, N., Vuust, P., in Brattico, E. (2022). Consonance and dissonance
                   perception: A critical review of the historical sources, multidisciplinary
                   findings, and main hypotheses. Physics of Life Reviews, 43(4), 273−304.
               Dumontheil, I (2014). Development of abstract thinking during
                   childhood and adolescence: The role of rostrolateral prefrontal cortex.
                   Developmental Cognitive Neuroscience, 10, 57−76.
               Encyclopedia Britannica. (B. l.a). Operetta. V Encyclopedia Britannica.
                   https://www.britannica.com/art/operetta
               Encyclopedia Britannica. (B. l.b). Recognition; memory. V Encyclopedia
                   Britannica. https://www.britannica.com/topic/recognition-memory
               Ferreri, L., in Rodriguez-Fornells, A. (2022). Memory modulations through
                   musical pleasure. Annals of the New York Academy of Sciences, 1516(1),
                   5−10.
               Ferreri, L., Mas-Herrero, E., Cardona, G., Zatorre, R. J., Antonijoan, R.
                   M., Valle, M., Riba, J., Ripolles, P., in Rodriguez-Fornells, A. (2021).
                   Dopamine modulations of reward-driven music memory consolidation.
                   Annals of the New York Academy of Sciences, 1502(1), 85−98.
               Gebauer, L., Kringelbach, M. L., in Vuust, P. (2012). Ever-changing
                   cycles of musical pleasure: The role of dopamine and anticipation.
                   Psychomusicology: Music, Mind and Brain, 22(2), 152−167.
               Gold, B. P., Pearce, M. T., McIntosh, A. R., Chang, C., Dagher, A., in
                   Zattore, R. J. (2023). Auditory and reward structures reflect the pleasure
                   of musical expectancies during naturalistic listening. Frontiers in
                   Neuroscience, 17, 1209398.
               Hansen, N. C., Dietz, M. J., in Vuust, P. (2017). Commentary: Predictions
                   and the brain; How musical sounds become rewarding. Frontiers in
                   Human Neuroscience, 11, 168.
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