[1] Atmaca S., Sebanz N., & Knoblich G. (2011). The joint flanker effect: Sharing tasks with real and imagined co- actors.Experimental Brain Research, 211(3-4), 371-385. [2] Beaurenaut M., Dezecache G., & Grèzes J. (2021). Action co-representation under threat: A social Simon study.Cognition, 215, 104829. [3] Bond, C. F., & Titus, L. J. (1983). Social facilitation: A meta- analysis of 241 studies.Psychological Bulletin, 94(2), 265-292. [4] Brass M., Bekkering H., Wohlschläger A., & Prinz W. (2000). Compatibility between observed and executed finger movements: Comparing symbolic, spatial, and imitative cues.Brain and Cognition, 44(2), 124-143. [5] 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. [6] Cohen, J. (1988). Statistical power analysis for the behavioral sciences (2nd ed.). Hillsdale: Erlbaum. [7] Cui X., Bryant D. M., & Reiss A. L. (2012). NIRS-based hyperscanning reveals increased interpersonal coherence in superior frontal cortex during cooperation.NeuroImage, 59(3), 2430-2437. [8] de la Asuncion J., Bervoets C., Morrens M., Sabbe B., & De Bruijn, E. R. (2015). EEG correlates of impaired self-other integration during joint-task performance in schizophrenia.Social Cognitive and Affective Neuroscience, 10(10), 1365-1372. [9] 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. [10] Dolk T., Hommel B., Prinz W., & Liepelt R. (2014). The joint flanker effect: Less social than previously thought.Psychonomic Bulletin & Review, 21(5), 1224-1230. [11] Faul F., Erdfelder E., Lang A. G., & Buchner B. (2007). G*Power 3: A flexible statistical power analysis program for the social, behavioral, and biomedical sciences.Behavior Research Methods, 39(2), 175-191. [12] Fineberg S. K., Leavitt J., Landry C. D., Neustadter E. S., Lesser R. E., Stahl D. S., ... Corlett P. R. (2018). Individuals with borderline personality disorder show larger preferred social distance in live dyadic interactions.Psychiatry Research, 260, 384-390. [13] Goffman, E. (1959). The presentation of self in everyday life. New York: Doubleday. [14] Grafton, S. T. (2009). Embodied cognition and the simulation of action to understand others.Annals of the New York Academy of Sciences, 1156(1), 97-117. [15] Guagnano D., Rusconi E., & Umiltà C. A. (2010). Sharing a task or sharing space? On the effect of the confederate in action coding in a detection task.Cognition, 114(3), 348-355. [16] Homans, G. C. (1958). Social behavior as exchange. American Journal of Sociology, 63(6), 597-606. [17] Hommel, B. (2007). Feature integration across perception and action: Event files affect response choice.Psychological Research, 71(1), 42-63. [18] Hommel B., Müsseler J., Aschersleben G., & Prinz W. (2001). The theory of event coding (TEC): A framework for perception and action planning.The Behavioral and Brain Sciences, 24(5), 849-937. [19] Iani C., Anelli F., Nicoletti R., & Rubichi S. (2014). The carry-over effect of competition in task-sharing: Evidence from the joint Simon task.PloS One, 9(6), e97991. [20] Jiang J., Dai B., Peng D., Zhu C., Liu L., & Lu C. (2012). Neural synchronization during face-to-face communication.The Journal of Neuroscience, 32(45), 16064-16069. [21] Jung E., Takahashi K., Watanabe K., de la Rosa S., Butz M. V., Bülthoff H. H., & Meilinger T. (2016). The influence of human body orientation on distance judgments.Frontiers in Psychology, 7, 217. [22] Kawakami K., Phills C. E., Steele J. R., & Dovidio J. F. (2007). (Close) distance makes the heart grow fonder: Improving implicit racial attitudes and interracial interactions through approach behaviors. Journal of Personality and Social Psychology, 92(6), 957-971. [23] Knowles M., Green A., & Weidel A. (2014). Social rejection biases estimates of interpersonal distance.Social Psychological and Personality Science, 5(2), 158-167. [24] Krieglmeyer R., De Houwer J., & Deutsch R. (2013). On the nature of automatically triggered approach-avoidance behavior.Emotion Review, 5(3), 280-284. [25] Kuehn E., Chen X., Geise P., Oltmer J., & Wolbers T. (2018). Social targets improve body-based and environment- based strategies during spatial navigation.Experimental Brain Research, 236(3), 755-764. [26] Lakoff, G. (2012). Explaining embodied cognition results.Topics in Cognitive Science, 4(4), 773-785. [27] Milward S. J., Kita S., & Apperly I. A. (2014). The development of co-representation effects in a joint task: Do children represent a co-actor?Cognition, 132(3), 269-279. [28] Mirlisenna I., Bonino G., Cappi G., Valvo A., Cariola M., & Monte O. (2026). Unpacking the social nature of interpersonal distance: Behavioral and physiological insights from real-time interactions.International Journal of Psychophysiology, 226, 113403. [29] Mundy, P., & Newell, L. (2007). Attention, joint attention, and social cognition.Current Directions in Psychological Science, 16(5), 269-274. [30] Schippers M. B., Roebroeck A., Renken R., Nanetti L., & Keysers C. (2010). Mapping the information flow from one brain to another during gestural communication.Proceedings of the National Academy of Sciences of the United States of America, 107(20), 9388-9393. [31] Sebanz N., Bekkering H., & Knoblich G. (2006). Joint action: Bodies and minds moving together.Trends in Cognitive Sciences, 10(2), 70-76. [32] Sebanz N., Knoblich G., & Prinz W. (2003). Representing others' actions: Just like one's own?Cognition, 88(3), B11-B21. [33] Sebanz N., Knoblich G., & Prinz W. (2005). How two share a task: Co-representing stimulus-response mappings.Journal of Experimental Psychology: Human Perception and Performance, 31(6), 1234-1246. [34] Simons, D. J. (2011). Change blindness, representations, and embodied cognition: Comment on "Embodied cognition and the perception-action link" by Bridgeman and Tseng.Physics of Life Reviews, 8(1), 86-87. [35] Song, X., & Dong, M. (2023). A multidimensional representation model of interpersonal collaboration: From the perspective of cognitive representation.Advances in Psychological Science, 31(7), 1288-1302. [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.] [36] 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. [37] Sorokowska A., Sorokowski P., Hilpert P., Cantarero K., Frackowiak T., Ahmadi K., .. Pierce J. D., Jr. (2017). Preferred interpersonal distances: A global comparison.Journal of Cross-Cultural Psychology, 48(4), 577-592. [38] Sprecher S., Treger S., & Wondra J. D. (2013). Effects of self-disclosure role on liking, closeness, and other impressions in get-acquainted interactions.Journal of Social and Personal Relationships, 30(4), 497-514. [39] Stepper, S., & Strack, F. (1993). Proprioceptive determinants of emotional and non-emotional feelings.Journal of Personality and Social Psychology, 64(2), 211-220. [40] Suzuki, N. (2023). Maneki Neko: The japanese secret to good luck and happiness. Tuttle Publishing. [41] Tsai C. C., Kuo W. J., Hung D. L., & Tzeng O. J. (2008). Action co-representation is tuned to other humans.Journal of Cognitive Neuroscience, 20(11), 2015-2024. [42] Tversky, B., & Hard, B. M. (2009). Embodied and disembodied cognition: Spatial perspective-taking.Cognition, 110(1), 124-129. [43] Van Dessel P., De Houwer J., Gast A., Roets A., & Smith C. T. (2020). On the effectiveness of approach-avoidance instructions and training for changing evaluations of social groups.Journal of Personality and Social Psychology, 119(2), e1-e14. [44] Vestner T., Tipper S. P., Hartley T., Over H., & Rueschemeyer S. -A. (2019). Bound together: Social binding leads to faster processing, spatial distortion, and enhanced memory of interacting partners.Journal of Experimental Psychology: General, 148(7), 1251-1268. [45] Wang J., Zhao M., & Xiang L. (2025). Co-actors’ intentions impact the occurrence of social transfer of learning effect.Chinese Journal of Applied Psychology, 31(1), 89-96. [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.] [46] Williams K. D., Cheung C. K., & Choi W. (2000). Cyberostracism: Effects of being ignored over the Internet.Journal of Personality and Social Psychology, 79(5), 748-762. [47] Yang M., Li X., Sang B., & Deng X. (2023). Age differences in interbrain synchronization during peer cooperation: An EEG hyperscanning study.Cerebral Cortex, 33(20), 10614-10623. [48] Zajonc, R. B. (1965). Social facilitation.Science, 149, 269-274. [49] Zhao M., Jiang D., & Wang J. (2025). Co-represented statistical regularities facilitate the processing of partner-related words during a joint memory task.Cognitive Science, 49(6), e70073. [50] Zheng, Z., & Wang, J. (2023). Co-actors represent each other's task regularity through social statistical learning.Cognition, 235, 105411. [51] Zheng, Z., & Wang, J. (2024). Interbrain neural correlates of self and other integration in joint statistical learning.NPJ science of learning, 9(1), 68. |