[1] 张苏媛, 兰泽波, 张水, 孟珠, 闫国利. (2021). 无关言语对一年级小学生阅读影响的眼动研究.心理与行为研究, 19(4), 7. [2] Bächtold D., Baumüller M., & Brugger P. (1998). Stimulus-response compatibility in representational space.Neuropsychologia, 36(8), 731-735. [3] Bruzzi E., Talamini F., Priftis K., & Grassi M. (2017). A SMARC effect for loudness.i-Perception (London), 8(6), 1-11. [4] Dehaene S., Bossini S., & Giraux P. (1993). The mental representation of parity and number magnitude.Journal of Experimental Psychology. General, 122(3), 371-396. [5] Hartmann, M., & Mast, F. W. (2017). Loudness counts: Interactions between loudness, number magnitude, and space. QuarterlyJournal of Experimental Psychology, 70(7), 1305-1322. [6] Hoppe S., Loetscher T., Morey S. A., & Bulling A. (2018). Eye movements during everyday behavior predict personality traits.Frontiers in Human Neuroscience, 12, 105-111. [7] Jiang, Q., & Ariga, A. (2020). The sound-free SMARC effect: The spatial-musical association of response codes using only sound imagery.Psychonomic Bulletin & Review, 27(5), 974-980. [8] Lega C., Cattaneo Z., Ancona N., Vecchi T., & Rinaldi L. (2020). Instrumental expertise and musical timbre modulate the spatial representation of pitch.Quarterly Journal of Experimental Psychology, 73(8), 1162-1172. [9] McCroskey, J. C., & Richmond, V. P. (1990). Willingness to communicate: A cognitive view.Journal of Social Behavior and Personality, 5(2), 19-37. [10] Naatanen R., Paavilainen P., Rinne T., &Alho K. (2007). The mismatch negativity (MMN) in basic research of central auditory processing: A review.Clinical Neurophysiology, 118(12), 2544-2590. [11] Pfordresher, P. Q. (2008). Auditory feedback in music performance: The role of transition-based similarity.Journal of experimental psychology. Human Perception and Performance, 34(3), 708-725. [12] Pitteri M., Marchetti M., Grassi M., &Priftis K. (2020). Pitch height and brightness both contribute to elicit the SMARC effect: A replication study with expert musicians.Psychological Research, 85(6), 2213-2222. [13] Proctor, R. W., & Cho, Y. S. (2006). Polarity correspondence: A general principle for performance of speeded binary classification tasks.Psychological Bulletin, 132(3), 416-442. [14] Prpic, V. (2018). Linear representation of pitch height in the SMARC effect.Psihologijske Teme, 27(3), 437-452. [15] Puigcerver L., Rodríguez-Cuadrado S., Gómez-Tapia V., & Navarra J. (2019). Vertical mapping of auditory loudness: Loud is high, but quiet is not always low.Psicológica (Valencia), 40(2), 85-104. [16] Rusconi E., Kwan B., Giordano B. L., Umiltà C., & Butterworth B. (2006). Spatial representation of pitch height: the SMARC effect.Cognition, 99(2), 113-129. [17] Siedenburg K., Fujinaga I., & McAdams S. (2016). A comparison of approaches to timbre descriptors in music information retrieval and music psychology.Journal of New Music Research, 45(1), 27-41. [18] Walker P., Bremner J. G., Mason U., Spring J., Mattock K., Slater A., & Johnson S. P. (2010). Preverbal infants’ sensitivity to synaesthetic cross-modality correspondences.Psychological Science, 21(1), 21-25. [19] Wang D., Ziano I., Hagger M. S., & Chatzisarantis, N. L. D. (2022). Loudness perceptions influence feelings of interpersonal closeness and protect against detrimental psychological effects of social exclusion.Personality & Social Psychology Bulletin, 48(4), 566-581.