[1] 李先春, 卑力添, 袁涤, 丁雅娜, 冯丹阳. (2018). 超扫描视角下的社会互动脑机制.心理科学, 41(6), 1484-1491. [2] 潘婷婷, 汪俊. (2024). 联合统计学习中任务无关信息的表征.应用心理学, 31(3), 258-266. [3] 宋晓蕾, 董梅梅. (2023). 人际协同的多重表征模型——基于认知表征的视角.心理科学进展, 31(7), 1288-1302. [4] 宋晓蕾, 李洋洋, 杨倩, 游旭群. (2018). 反应手的不同状态对联合任务中观察学习的影响.心理学报, 50(9), 975-984. [5] 汪俊, 赵梦飞, 向丽雅. (2025). 同伴意图有无对社会学习迁移效应的影响.应用心理学, 31(1), 89-96. [6] 汪俊, 郑峥. (2025). 联合行动情境对个体时间知觉的影响.心理学报, 57(7), 1170-1186. [7] 徐胜, 宋晓蕾. (2016). 联合Simon效应: 现状、影响因素与理论解释.心理科学进展, 24(3), 367-378. [8] 朱怡, 胡谊. (2024). 师生互动中组块化反馈促进长时学习迁移:行为和近红外超扫描研究.心理学报, 56(5), 555-576. [9] Arellano-Véliz N. A., Jeronimus B. F., Kunnen E. S., & Cox, R. F. A. (2024). The interacting partner as the immediate environment: Personality, interpersonal dynamics, and bodily synchronization.Journal of Personality, 92(1), 180-201. [10] Atmaca S., Sebanz N., Prinz W., & Knoblich G. (2008). Action co-representation: The joint SNARC effect.Social Neuroscience, 3(3-4), 410-420. [11] Azizi, Z., & Ebrahimpour, R. (2023). Explaining integration of evidence separated by temporal gaps with frontoparietal circuit models.Neuroscience, 509, 74-95. [12] Badre, D., & D’Esposito, M. (2007). Functional magnetic resonance imaging evidence for a hierarchical organization of the prefrontal cortex.Journal of Cognitive Neuroscience, 19(12), 2082-2099. [13] Baker C. L., Jara-Ettinger J., Saxe R., & Tenenbaum J. B. (2017). Rational quantitative attribution of beliefs, desires and percepts in human mentalizing. Nature Human Behaviour, 1(4), 0064. [14] Barnby J. M., Raihani N., & Dayan P. (2022). Knowing me, knowing you: Interpersonal similarity improves predictive accuracy and reduces attributions of harmful intent.Cognition, 225, 105098. [15] Bogaerts L., Szmalec A., De Maeyer M., Page M. P., & Duyck W. (2016). The involvement of long-term serial- order memory in reading development: A longitudinal study.Journal of Experimental Child Psychology, 145, 139-156. [16] Bolis, D., & Schilbach, L. (2017). Beyond one Bayesian brain: Modeling intra- and inter-personal processes during social interaction: Commentary on “Mentalizing homeostasis: The social origins of interoceptive inference” by Fotopoulou & Tsakiris.Neuropsychoanalysis, 19(1), 35-38. [17] Bolt, N. K., & Loehr, J. D. (2017). The predictability of a partner’s actions modulates the sense of joint agency.Cognition, 161, 60-65. [18] Campos-Moinier K., Murday V., & Brunel L. (2023). Individual differences in social interaction contexts: Examining the role of personality traits in the degree of self-other integration.Personality and Individual Differences, 203, 112002. [19] Cellier D., Petersen I. T., & Hwang K. (2022). Dynamics of hierarchical task representations.Journal of Neuroscience, 42(38), 7276-7284. [20] Cheng X., Guo B., & Hu Y. (2022). Distinct neural couplings to shared goal and action coordination in joint action: Evidence based on fNIRS hyperscanning.Social Cognitive and Affective Neuroscience, 17(10), 956-964. [21] Cheng X., Pan Y., Hu Y., & Hu Y. (2019). Coordination elicits synchronous brain activity between co-actors: frequency ratio matters.Frontiers in Neuroscience, 13, 1071. [22] Ciardo, F., & Wykowska, A. (2018). Response coordination emerges in cooperative but not competitive joint task.Frontiers in Psychology, 9, 1919. [23] Clark, H. H., & Brennan, S. E. (1991). Grounding in communication. In L. B. Resnick, J. M. Levine, & S. D. Teasley (Eds.), Perspectives on socially shared cognition(pp. 127-149). American Psychological Association. [24] Diaconescu A. O., Mathys C., Weber L. A., Daunizeau J., Kasper L., Lomakina E. I., .. Stephan K. E. (2014). Inferring on the intentions of others by hierarchical Bayesian learning.PLoS Computational Biology, 10(9), e1003810. [25] Dolk T., Hommel B., Colzato L. S., Schütz-Bosbach S., Prinz W., & Liepelt R. (2014). The joint Simon effect: A review and theoretical integration.Frontiers in Psychology, 5, 974. [26] Dolk T., Hommel B., Prinz W., & Liepelt R. (2013). The (not so) social Simon effect: A referential coding account.Journal of Experimental Psychology: Human Perception and Performance, 39(5), 1248-1260. [27] Dolk T., Liepelt R., Villringer A., Prinz W., & Ragert P. (2012). Morphometric gray matter differences of the medial frontal cortex influence the social Simon effect.NeuroImage, 61(4), 1249-1254. [28] Éltető N., Nemeth D., Janacsek K., & Dayan P. (2022). Tracking human skill learning with a hierarchical Bayesian sequence model.PLoS Computational Biology, 18(11), e1009866. [29] Farkas B. C., Krajcsi A., Janacsek K., & Nemeth D. (2024). The complexity of measuring reliability in learning tasks: An illustration using the Alternating Serial Reaction Time Task.Behavior Research Methods, 56(1), 301-317. [30] Garrod, S., & Pickering, M. J. (2009). Joint action, interactive alignment, and dialog.Topics in Cognitive Science, 1(2), 292-304. [31] Goodman J. R., Isenhower R. W., Marsh K. L., Schmidt R. C., & Richardson, M. J. (2023). The interpersonal phase entrainment of rocking chair movements. In H. Heft & K. L. Marsh (Eds.), Studies in perception and action VIII (pp. 49-53). Psychology Press. [32] Hoppe K., Küper K., & Wascher E. (2017). Sequential modulations in a combined horizontal and vertical Simon task: Is there ERP evidence for feature integration effects?Frontiers in Psychology, 8, 1094. [33] Iani C., Rubichi S., Ferraro L., Nicoletti R., & Gallese V. (2013). Observational learning without a model is influenced by the observer’s possibility to act: Evidence from the Simon task.Cognition, 128(1), 26-34. [34] Isenhower R. W., Richardson M. J., Carello C., Baron R. M., & Marsh K. L. (2010). Affording cooperation: Embodied constraints, dynamics, and action-scaled invariance in joint lifting.Psychonomic Bulletin & Review, 17(3), 342-347. [35] Jazayeri, M., & Shadlen, M. N. (2010). Temporal context calibrates interval timing.Nature Neuroscience, 13(8), 1020-1026. [36] Jia L., Sung B., & Wang J. (2022). The role of right insula and its functional connectivity in the regulation of negative implicit stereotypes against rural migrant workers.Cognitive, Affective, & Behavioral Neuroscience, 22(4), 803-817. [37] Johnson E. L., Lin J. J., King-Stephens D., Weber P. B., Laxer K. D., Saez I., … Badre D. (2023). A rapid theta network mechanism for flexible information encoding.Nature Communications, 14(1), 2872. [38] Khalvati K., Park S. A., Mirbagheri S., Philippe R., Sestito M., Dreher J. C., & Rao R. P. (2019). Modeling other minds: Bayesian inference explains human choices in group decision-making. Science Advances, 5(11), eaax8783. [39] Kirschner, S., & Tomasello, M. (2009). Joint drumming: Social context facilitates synchronization in preschool children.Journal of Experimental Child Psychology, 102(3), 299-314. [40] Kleiman-Weiner M., Vientós A., Rand D. G., & Tenenbaum J. B. (2025). Evolving general cooperation with a Bayesian theory of mind.Proceedings of the National Academy of Sciences, 122(25), e2400993122. [41] Knoblich G., Butterfill S., & Sebanz N. (2011). Psychological research on joint action: Theory and data.Psychology of Learning and Motivation, 54, 59-101. [42] Kóbor A., Horváth K., Kardos Z., Takács Á., Janacsek K., Csépe V., & Nemeth D. (2019). Tracking the implicit acquisition of nonadjacent transitional probabilities by ERPs.Memory & Cognition, 47(8), 1546-1566. [43] Lamba A., Frank M. J., & FeldmanHall O. (2020). Anxiety impedes adaptive social learning under uncertainty.Psychological Science, 31(5), 592-603. [44] Leman, M., & Naveda, L. (2010). Basic gestures as spatiotemporal reference frames for repetitive dance/ music patterns in Samba and Charleston.Music Perception, 28(1), 71-91. [45] Li Y., Pan Y., & Zhao D. (2026). Understanding the neurobiology and computational mechanisms of social conformity: Implications for psychiatric disorders. Biological Psychiatry, 99(5), 365-374. [46] Liepelt R., Klempova B., Dolk T., Colzato L. S., Ragert P., Nitsche M. A., & Hommel B. (2016). The medial frontal cortex mediates self-other discrimination in the joint Simon task: A tDCS study.Journal of Psychophysiology, 30(3), 87-101. [47] Liu L., Wu J., Geng H., Liu C., Luo Y., Luo J., & Qin S. (2022). Long-term stress and trait anxiety affect brain network balance in dynamic cognitive computations.Cerebral Cortex, 32(14), 2957-2971. [48] Lum J. A. G., Barham M. P., Hyde C., Hill A. T., White D. J., Hughes M. E., & Clark G. M. (2024). Top-down and bottom-up oscillatory dynamics regulate implicit visuomotor sequence learning. Cerebral Cortex, 34(7), bhae266. [49] Mathys C., Daunizeau J., Friston K. J., & Stephan K. E. (2011). A Bayesian foundation for individual learning under uncertainty.Frontiers in Human Neuroscience, 5, 39. [50] Mayo, O., & Shamay-Tsoory, S. (2024). Dynamic mutual predictions during social learning: A computational and interbrain model.Neuroscience & Biobehavioral Reviews, 157, 105513. [51] Milanese N., Iani C., Sebanz N., & Rubichi S. (2011). Contextual determinants of the social-transfer-of-learning effect.Experimental Brain Research, 211(3), 415-422. [52] Miss F. M., Adriaense J. E. C., & Burkart J. M. (2022). Towards integrating joint action research: Developmental and evolutionary perspectives on co-representation.Neuroscience & Biobehavioral Reviews, 143, 104924. [53] Miti F., Toppi J., Ciaramidaro A., Astolfi L., Iani C., & Rubichi S. (2026). Inter-brain ERPs alignment during a joint Simon task: An EEG hyperscanning study.PLoS One, 21(1), e0338934. [54] Moutoussis M., Fearon P., El-Deredy W., Dolan R. J., & Friston K. J. (2014). Bayesian inferences about the self (and others): A review.Consciousness and Cognition, 25, 67-76. [55] Nassar M. R., Wilson R. C., Heasly B., & Gold J. I. (2010). An approximately Bayesian delta-rule model explains the dynamics of belief updating in a changing environment.Journal of Neuroscience, 30(37), 12366-12378. [56] Nee, D. E., & D’Esposito, M. (2016). The hierarchical organization of the lateral prefrontal cortex. eLife, 5, e12112. [57] Ng D. X., Lin P. K., Marsh N. V., & Ramsay J. E. (2025). Associations between openness and intergroup attitudes: A facet level analysis.Personality and Individual Differences, 236, 112985. [58] Otten M., Seth A. K., & Pinto Y. (2017). A social Bayesian brain: How social knowledge can shape visual perception.Brain and Cognition, 112, 69-77. [59] Pan Y., Novembre G., & Olsson A. (2022). The interpersonal neuroscience of social learning.Perspectives on Psychological Science, 17(3), 680-695. [60] Pan Y., Wen Y., Jin J., & Chen J. (2023). The interpersonal computational psychiatry of social coordination in schizophrenia.The Lancet Psychiatry, 10(10), 801-808. [61] Pesquita A., Whitwell R. L., & Enns J. T. (2018). Predictive joint-action model: A hierarchical predictive approach to human cooperation.Psychonomic Bulletin & Review, 25(5), 1751-1769. [62] Pezzulo, G., & Dindo, H. (2011). What should I do next? Using shared representations to solve interaction problems.Experimental Brain Research, 211(3), 613-630. [63] Pezzulo G., Zorzi M., & Corbetta M. (2021). The secret life of predictive brains: What’s spontaneous activity for?Trends in Cognitive Sciences, 25(9), 730-743. [64] Proietti R., Pezzulo G., & Tessari A. (2023). An active inference model of hierarchical action understanding, learning and imitation.Physics of Life Reviews, 46, 92-118. [65] Puffe L., Dittrich K., & Klauer K. C. (2017). The influence of the Japanese waving cat on the joint spatial compatibility effect: A replication and extension of Dolk, Hommel, Prinz, and Liepelt (2013).PLoS One, 12(9), e0184844. [66] Quintard V., Jouffre S., Croizet J. C., & Bouquet C. A. (2020). The influence of passionate love on self-other discrimination during joint action.Psychological Research, 84(1), 51-61. [67] Rosso M., Moens B., Leman M., & Moumdjian L. (2023). Neural entrainment underpins sensorimotor synchronization to dynamic rhythmic stimuli.NeuroImage, 277, 120226. [68] Scott B. B., Constantinople C. M., Akrami A., Hanks T. D., Brody C. D., & Tank D. W. (2017). Fronto-parietal cortical circuits encode accumulated evidence with a diversity of timescales. Neuron, 95(2), 385-398.e5. [69] Sebanz N., Bekkering H., & Knoblich G. (2006). Joint action: Bodies and minds moving together.Trends in Cognitive Sciences, 10(2), 70-76. [70] Sebanz, N., & Knoblich, G. (2009). Prediction in joint action: What, when, and where.Topics in Cognitive Science, 1(2), 353-367. [71] Sebanz N., Knoblich G., & Prinz W. (2003). Representing others' actions: Just like one's own?Cognition, 88(3), B11-B21. [72] Sellaro R., Dolk T., Colzato L. S., Liepelt R., & Hommel B. (2015). Referential coding does not rely on location features: Evidence for a nonspatial joint Simon effect.Journal of Experimental Psychology: Human Perception and Performance, 41(1), 186-195. [73] Sened H., Phan T. X., Thornton M. A., Verosky S., & Tamir D. I. (2025). Disentangling the effects of similarity, familiarity, and liking on social inference strategies.British Journal of Social Psychology, 64(1), e12793. [74] Sevgi M., Diaconescu A. O., Henco L., Tittgemeyer M., & Schilbach L. (2020). Social Bayes: Using Bayesian modeling to study autistic trait-related differences in social cognition.Biological Psychiatry, 87(2), 185-193. [75] Shamay-Tsoory S. G., Saporta N., Marton-Alper I. Z., & Gvirts H. Z. (2019). Herding brains: A core neural mechanism for social alignment.Trends in Cognitive Sciences, 23(3), 174-186. [76] Shen L., Li S., Tian Y., Wang Y., & Jiang Y. (2025). Cortical tracking of hierarchical rhythms orchestrates the multisensory processing of biological motion. eLife, 13, RP98701. [77] Song X., Dong M., Feng K., Li J., Hu X., & Liu T. (2024). Influence of interpersonal distance on collaborative performance in the joint Simon task—An fNIRS-based hyperscanning study.NeuroImage, 285, 120473. [78] Stacy S., Gong S., Parab A., Zhao M., Jiang K., & Gao T. (2024). A Bayesian theory of mind approach to modeling cooperation and communication.Wiley Interdisciplinary Reviews: Computational Statistics, 16(1), e1631. [79] Trope, Y., & Liberman, N. (2010). Construal-level theory of psychological distance.Psychological Review, 117(2), 440-463. [80] van Ede, F., & Nobre, A. C. (2024). A neural decision signal during internal sampling from working memory in humans.Journal of Neuroscience, 44(19), e1475232024. [81] Vilares, I., & Kording, K. (2011). Bayesian models: The structure of the world, uncertainty, behavior, and the brain.Annals of the New York Academy of Sciences, 1224(1), 22-39. [82] Wenke D., Atmaca S., Holländer A., Liepelt R., Baess P., & Prinz W. (2011). What is shared in joint action? Issues of co-representation, response conflict, and agent identification.Review of Philosophy and Psychology, 2(2), 147-172. [83] Wu S. A., Wang R. E., Evans J. A., Tenenbaum J. B., Parkes D. C., & Kleiman-Weiner M. (2021). Too many cooks: Bayesian inference for coordinating multi-agent collaboration.Topics in Cognitive Science, 13(2), 414-432. [84] Yoshida W., Seymour B., Friston K. J., & Dolan R. J. (2010). Neural mechanisms of belief inference during cooperative games.Journal of Neuroscience, 30(32), 10744-10751. [85] Yuan P., Hu R., Zhang X., Wang Y., & Jiang Y. (2021). Cortical entrainment to hierarchical contextual rhythms recomposes dynamic attending in visual perception.eLife, 10, e65118. [86] Zaragoza-Jimenez N., Niehaus H., Thome I., Vogelbacher C., Ende G., Kamp-Becker I., .. Jansen A. (2023). Modeling face recognition in the predictive coding framework: A combined computational modeling and functional imaging study.Cortex, 168, 203-225. [87] Zheng, Z., & Wang, J. (2023). Co-actors represent each other's task regularity through social statistical learning. Cognition, 235, 105411. [88] Zheng, Z., & Wang, J. (2024a). Interpersonal prior information informs ensemble coding through the co- representation process.Psychonomic Bulletin & Review, 31(2), 886-896. [89] Zheng, Z., & Wang, J. (2024b). Interbrain neural correlates of self and other integration in joint statistical learning.NPJ Science of Learning, 9(1), 68. |