[1] Rinott M, Tractinsky N. Designing for interpersonal motor synchronization [J]. Hum Comp Inter, 2021:37:69-116. [2] Tholen MG, Trautwein FM, Bockler A, et al. Functional magnetic resonance imaging (fMRI) item analysis of empathy and theory of mind [J]. Hum Brain Mapp, 2020, 41(10): 2611-2628. [3] Nishimura S, Nakamura T, Sato W, et al. Vocal synchrony of robots boosts positive affective empathy [J]. Appl Sci, 2021, 11(6): 2502-2520. [4] Yaniv AU, Salomon R, Waidergoren S, et al. Synchronous caregiving from birth to adulthood tunes humans' social brain [J]. Proc Natl Acad Sc, 2021, 118(14): e201290011. [5] Mcnaughton KA, Redcay E. Interpersonal synchrony in autism [J]. Curr Psychiatry Rep, 2020, 22(3): 12-23. [6] Zampella CJ, Csumitta KD, Simon E, et al. Interactional synchrony and its association with social and communication ability in children with and without autism spectrum disorder [J]. J Autism Dev Disord, 2020, 50(9): 3195-3206. [7] Bloch C, Vogeley K, Georgescu AL, et al. INTRApersonal synchrony as constituent of INTERpersonal synchrony and Its relevance for autism spectrum disorder [J]. Front Rob AI, 2019, 6: 73-81. [8] Baillin F, Lefebvre A, Pedoux A, et al. Interactive psychometrics for autism with the human dynamic clamp: Interpersonal synchrony from sensorimotor to sociocognitive domains [J]. Front Psychiatry, 2020, 11: 510366. [9] Stoodley CJ, Tsai PT. Adaptive prediction for social contexts: The cerebellar contribution to typical and atypical social behaviors[J]. Annu Rev Neurosci, 2021, 44: 475-493. [10] Liu Q, Wang Q, Li X, et al. Social synchronization during joint attention in children with autism spectrum disorder[J]. Autism Res, 2021, 14(10): 2120-2130. [11] Zhao Z, Tang H, Zhang X, et al. Characteristics of visual fixation in chinese children with autism during face-to-face conversations[J]. J Autism Dev Disord, 2021.doi:org/10.1007/s10803-021-04985-y. [12] Arutiunian V, Lopukhina A, Minnigulova A, et al. Expressive and receptive language in Russian primary-school-aged children with autism spectrum disorder[J]. Res Dev Disabil, 2021, 117: 104042. [13] Georgiou N, Spanoudis G. Developmental language disorder and autism: Commonalities and differences on language[J]. Brain Sci, 2021, 11(5): 589-618. [14] Wadge H, Brewer R, Bird G, et al. Communicative misalignment in autism spectrum disorder[J]. Cortex, 2019, 115: 15-26. [15] Livingston LA, Kumarendran SM, Shah P. Definition: Compensation[J]. Cortex, 2021, 134: 365-365. [16] Livingston LA, Shah P, Milner V, et al. Quantifying compensatory strategies in adults with and without diagnosed autism[J]. Mol Autism, 2020, 11(1): 1-10. [17] Briot K, Pizano A, Bouvard M, et al. New technologies as promising tools for assessing facial emotion expressions impairments in ASD: A systematic review[J]. Front Psychiatry, 2021, 12: 634756. [18] Mazzoni N, Landi I, Ricciardelli P, et al. Motion or emotion? Recognition of emotional bodily expressions in children with autism spectrum disorder with and without intellectual disability[J]. Front Psychol, 2020, 11: 478-491. [19] Giannotti M, De Falco S, Venuti P. Alexithymia, not autism spectrum disorder, predicts perceived attachment to parents in school-age children[J]. Front Psychol, 2020, 11: 332-340. [20] Schwartz S, Wang L, Shinn-Cunningham BG, et al. Atypical perception of sounds in minimally and low verbal children and adolescents with autism as revealed by behavioral and neural measures[J]. Autism Res, 2020, 13(10): 1718-1729. [21] Stroganova TA, Komarov KS, Sysoeva OV, et al. Left hemispheric deficit in the sustained neuromagnetic response to periodic click trains in children with ASD[J]. Mol Autism, 2020, 11(1): 100-122. [22] Pavăl D, Micluia IV. The dopamine hypothesis of autism spectrum disorder revisited: Current status and future prospects[J]. Dev Neurosci, 2021, 43: 73-83. [23] Lalanne S, Fougerou-Leurent C, Anderson GM, et al. Melatonin: From pharmacokinetics to clinical use in autism spectrum disorder[J]. Int J Mol Sci, 2021, 22(3): 1490-1511. [24] Huang Y, Huang X, Ebstein RP, et al. Intranasal oxytocin in the treatment of autism spectrum disorders: A multilevel meta-analysis[J]. Neurosci Biobehav Rev, 2021, 122: 18-27. [25] Parker KJ, Oztan O, Libove RA, et al. Intranasal oxytocin treatment for social deficits and biomarkers of response in children with autism[J]. Proc Natl Acad Sci USA, 2017, 114(30): 8119-8124. [26] Quinones-Camacho LE, Fishburn FA, Belardi K, et al. Dysfunction in interpersonal neural synchronization as a mechanism for social impairment in autism spectrum disorder[J]. Autism Res, 2021, 14(8): 1585-1596. [27] Lombardo MV, Eyler L, Pramparo T, et al. Atypical genomic cortical patterning in autism with poor early language outcome[J]. Sci Adv, 2021, 7(36): eabh1663. [28] Su WC, Culotta M, Mueller J, et al. Differences in cortical activation patterns during action observation, action execution, and interpersonal synchrony between children with or without autism spectrum disorder (ASD): An fNIRS pilot study[J]. PLoS One, 2020, 15(10): e0240301. [29] Nebel MB, Eloyan A, Nettles CA, et al. Intrinsic visual-motor synchrony correlates with social deficits in autism[J]. Biol Psychol, 2016, 79(8): 633-641. [30] Pan Y, Novembre G, Song B, et al. Dual brain stimulation enhances interpersonal learning through spontaneous movement synchrony[J]. Soc Cogn Affect Neurosci, 2021, 16(1-2): 210-221. [31] Wang Q, Han Z, Hu X, et al. Autism symptoms modulate interpersonal neural synchronization in children with autism spectrum disorder in cooperative interactions[J]. Brain Topogr, 2020, 33(1): 112-122. [32] Kruppa JA, Reindl V, Gerloff C, et al. Brain and motor synchrony in children and adolescents with ASD-a fNIRS hyperscanning study[J]. Soc Cogn Affect Neurosci, 2021, 16(1-2): 103-116. [33] Schore AN. The interpersonal neurobiology of intersubjectivity[J]. Front Psychol, 2021, 12: 648616. [34] Riva V, Caruso A, Apicella F, et al. Early developmental trajectories of expressive vocabulary and gesture production in a longitudinal cohort of Italian infants at high-risk for autism spectrum disorder[J]. Autism Res, 2021: 1-13. [35] Kellerman AM, Schwichtenberg A, Abu-Zhaya R, et al. Dyadic synchrony and responsiveness in the first year: Associations with autism risk[J]. Autism Res, 2020, 13(12): 2190-2201. [36] Bertamini G, Bentenuto A, Perzolli S, et al. Quantifying the child-therapist interaction in ASD intervention: An observational coding system[J]. Brain Sci, 2021, 11(3): 366-389. [37] Yoo GE, Kim SJ. Dyadic drum playing and social skills: Implications for rhythm-mediated intervention for children with autism spectrum disorder[J]. J Music Ther, 2018, 55(3): 340-375. [38] Samadani A, Kim S, Moon J, et al. Neurophysiological synchrony between children with severe physical disabilities and their parents during music therapy[J]. Front Neurosci, 2021, 15: 531915. [39] Dvir T, Lotan N, Viderman R, et al. The body communicates: Movement synchrony during music therapy with children diagnosed with ASD[J]. Art Psychother, 2020, 69: 101658. [40] Schirmer A, Lo C, Wijaya M. When the music's no good: Rhythms prompt interactional synchrony but impair affective communication outcomes[J]. Commun Res, 2021,50(1):30-52. |