Open Access

Research on the analysis of traditional music tunes in the context of network information technology


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Romero-Rivas, C., Fátima, Vera-Constán, Sara, Rodríguez-Cuadrado, Puigcerver, L., & Navarra, J. (2018). Seeing music: the perception of melodic ‘ups and downs’ modulates the spatial processing of visual stimuli. Neuropsychologia, 117.Search in Google Scholar

Su, J., Zhou, P., Schweitzer, F. (2022). USE OF GAUSSIAN PROCESS TO MODEL, PREDICT AND EXPLAIN HUMAN EMOTIONAL RESPONSE TO CHINESE TRADITIONAL MUSIC. Advances in Complex Systems.Search in Google Scholar

Kroher, N., Díaz-Báez, José-Miguel. (2018) Audio-Based Melody Categorization: Exploring Signal Representations and Evaluation Strategies. Computer Music Journal, 41(4), 64-82.Search in Google Scholar

Song, G., Wang, Z., Han, F., et al. (2020) Music auto-tagging using scattering transform and convolutional neural network with self-attention. Applied Soft Computing, 96, 106702.Search in Google Scholar

L. Marie-Élaine, Isabelle, P., Rich, Z. B. (2018) Neurophysiological and Behavioral Differences between Older and Younger Adults When Processing Violations of Tonal Structure in Music. Frontiers in Neuroscience, 12, 54-.Search in Google Scholar

Summer, F., Angela, A. (2018) Tonsils with a Tune: A Randomized Control Trial Evaluating the Effects of Music Medicine on Pediatric Adenotonsillectomy Anxiety and Pain. Journal of PeriAnesthesia Nursing, 33(4), e27.Search in Google Scholar

Liu, X. (2021) An Improved Particle Swarm Optimization-Powered Adaptive Classification and Migration Visualization for Music Style. Complexity.Search in Google Scholar

Liu, Y., Tang, Q., Zhao, X., Lu, H., Yuan, G., & Wang, G., et al. (2021). Neural activation of different music styles during emotion-evoking:. Psychology of Music, 49(6), 1546-1560.Search in Google Scholar

Adamos, D. A., Laskaris, N. A., Micheloyannis, S. (2018). Harnessing functional segregation across brain rhythms as a means to detect EEG oscillatory multiplexing during music listening. Journal of Neural Engineering, 15(3), 036012.1-036012.14.Search in Google Scholar

Nussbaum, C., & Schweinberger, S. R. (2021). Links between musicality and vocal emotion perception. Emotion Review, 13(3), 211-224.Search in Google Scholar

Li, B., Liu, X., Dinesh, K., et al. (2018). Creating a Multitrack Classical Music Performance Dataset for Multimodal Music Analysis: Challenges, Insights, and Applications. IEEE transactions on multimedia.Search in Google Scholar

Siragusa, M. A., Brizard, B., Dujardin, P. A., et al. (2020). When classical music relaxes the brain: An experimental study using Ultrasound Brain Tissue Pulsatility Imaging. International Journal of Psychophysiology, 150(4).Search in Google Scholar

Taylor, C., Pierce, J. R. (1993). Exploring Music: The Science and Technology of Tones and Tunes. Physics Today, 46(4), 63-64.Search in Google Scholar

Freese, N. H., Norris, D. C., Loraine, A. E. (2016). Integrated genome browser: visual analytics platform for genomics. Bioinformatics, (14), 2089-2095.Search in Google Scholar

Chang, V., Aljawarneh, S. A., & Chung-Sheng, Li. (2020). Special issue on "advances in visual analytics and mining visual data". Expert Systems, 37(5).Search in Google Scholar

Fortes, L. S., Almeida, S. S., Praa, G., M., JoséR.A., Nascimento-Júnior, Lima-Junior, D., & Barbosa, B. T., et al. (2021). Virtual reality promotes greater improvements than video-stimulation screen on perceptual-cognitive skills in young soccer athletes. Human Movement Science, 79, 102856-.Search in Google Scholar

eISSN:
2444-8656
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics