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Research Articles

Serious Games for Children with Autism Spectrum Disorder: A Systematic Literature Review

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References

  • Abreu, L. F., Barbosa, G. A., Silva, I. S., & Santos, N. S. (2016). Caracterização dos processos para elicitação de requisitos de software: Uma revisão sistemática da literatura. In Anais do XII Simpósio Brasileiro de Sistemas de Informação (pp. 192–199).
  • Aguiar, E. C., Gomes, V. O., & Sarinho, V. T. (2018). Quiztea – a proposal to develop digital quizzes for individuals with autism spectrum disorder [Quiztea-uma proposta de desenvolvimento de quiz digitais para indivíduos portadores do transtorno do espectro autista]. In XVII Brazilian Symposium on Computer Games and Digital Entertainment (SBGAMES).
  • Al-Hammadi, M., & Abdelazim, A. (2015). Randomness impact in digital game-based learning. In 2015 IEEE Global Engineering Education Conference (EDUCON) (pp. 806–811).
  • American Psychiatric Association (2013). Diagnostic and statistical manual of mental disorders (5th ed.). American Psychiatric Association.
  • Aruanno, B., Garzotto, F., Torelli, E., & Vona, F. (2018). Hololearn: Wearable mixed reality for people with neurodevelopmental disorders (NDD). In Proceedings of the 20th International ACM SIGACCESS Conference on Computers and Accessibility (pp. 40–51).
  • Barajas, A. O., Al Osman, H., & Shirmohammadi, S. (2017). A serious game for children with autism spectrum disorder as a tool for play therapy. In 2017 IEEE 5th International Conference on Serious Games and Applications for Health (SEGAH) (pp. 1–7).
  • Bartoli, L., Garzotto, F., Gelsomini, M., Oliveto, L., & Valoriani, M. (2014). Designing and evaluating touchless playful interaction for ASD children. In Proceedings of the 2014 Conference on Interaction Design and Children (pp. 17–26).
  • Bartolome, N. A., Zorrilla, A. M., & Zapirain, B. G. (2013). Autism spectrum disorder children interaction skills measurement using computer games. In Proceedings of CGAMES’2013 USA (pp. 207–211).
  • Boyd, L. E., Gupta, S., Vikmani, S. B., Gutierrez, C. M., Yang, J., Linstead, E., & Hayes, G. R. (2018). vrSocial: Toward immersive therapeutic VR systems for children with autism. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems (pp. 1–12).
  • Boyd, L. E., Ringland, K. E., Faucett, H., Hiniker, A., Klein, K., Patel, K., & Hayes, G. R. (2017). Evaluating an iPad game to address overselectivity in preliterate AAC users with minimal verbal behavior. In Proceedings of the 19th International ACM SIGACCESS Conference on Computers and Accessibility (pp. 240–249).
  • Boyd, L. E., Ringland, K. E., Haimson, O. L., Fernandez, H., Bistarkey, M., & Hayes, G. R. (2015). Evaluating a collaborative iPad game’s impact on social relationships for children with autism spectrum disorder. ACM Transactions on Accessible Computing (TACCESS), 7(1), 1–18. https://doi.org/10.1145/2751564
  • Braz, P., Raposo, A., & Souza, C. S. D (2014). Adaptable technology design for professionals working with autism [Design de tecnologias adaptáveis para uso de profissionais da Área de autism]. In Companion Proceedings of the 13th Brazilian Symposium on Human Factors in Computing Systems (pp. 17–20).
  • Broussard, R., Fazzio, S., Kang, S. C.-Y., & Francisco-Revilla, L. (2012). A computer activity to encourage facial expression recognition for children with autism spectrum disorders. In Proceedings of the 2012 IConference (pp. 478–479).
  • Buzzi, M. C., Paolini, G., Senette, C., Buzzi, M., & Paratore, M. T. (2019). Designing an accessible web app to teach piano to students with autism. In Proceedings of the 13th Biannual Conference of the Italian SIGCHI Chapter: Designing the Next Interaction (pp. 1–12).
  • Carlier, S., Paelt, S., Van der Ongenae, F., De Backere, F., & De Turck, F. (2019). Using a serious game to reduce stress and anxiety in children with autism spectrum disorder. In Proceedings of the 13th EAI International Conference on Pervasive Computing Technologies for Healthcare (pp. 452–461).
  • Caro, K., Martínez-García, A. I., Tentori, M., & Zavala-Ibarra, I. (2014). Designing exergames combining the use of fine and gross motor exercises to support self-care activities. In Proceedings of the 16th International ACM SIGACCESS Conference on Computers & Accessibility (pp. 247–248).
  • Carvalho, L. T., & Cunha, M. X. C. (2019). ABC autism animals: An application to aid children with autism in learning [ABC autismo animais: Um aplicativo para auxiliar a aprendizagem de crianças com autism]. In Anais do Computer Games and Digital Entertainment (SBGAMES).
  • Chan, S., Cai, Y., Lu, A., Tun, N. Z., Huang, L., & Chandrasekaran, I. (2016). Virtual reality enhanced pink dolphin game for children with ASD. In Proceedings of the 3rd Asia-Europe Symposium on Simulation & Serious Gaming (pp. 215–218).
  • Chang, M., Kuo, R., Lyu, C.-W., & Heh, J.-S. (2012). A situated game for autistic children learning activities of daily living. In 2012 IEEE Fourth International Conference on Digital Game and Intelligent Toy Enhanced Learning (pp. 217–220).
  • Chen, C., Chander, A., & Uchino, K. (2019). Guided play: Digital sensing and coaching for stereotypical play behavior in children with autism. In Proceedings of the 24th International Conference on Intelligent User Interfaces (pp. 208–217).
  • Christinaki, E., Vidakis, N., & Triantafyllidis, G. (2013). Facial expression recognition teaching to preschoolers with autism: A natural user interface approach. In Proceedings of the 6th Balkan Conference in Informatics (pp. 141–148).
  • Coelho, T., Barbosa, G. A., Silva, I. S., Coutinho, F. R. D. S., & Silva, F. R. D. (2017). An overview of researches on digital accessibility before and after the great challenges of SBC 2006–2016: A systematic literature review. In Proceedings of the XVI Brazilian Symposium on Human Factors in Computing Systems (pp. 1–10).
  • Crovari, P., Gianotti, M., Riccardi, F., & Garzotto, F. (2019). Designing a smart toy: Guidelines from the experience with smart dolphin” SAM. In Proceedings of the 13th Biannual Conference of the Italian SIGCHI Chapter: Designing the Next Interaction (pp. 1–10).
  • Cunha, P., Brandão, J., Vasconcelos, J., Soares, F., & Carvalho, V. (2016). Augmented reality for cognitive and social skills improvement in children with ASD. In 2016 13th International Conference on Remote Engineering and Virtual Instrumentation (REV) (pp. 334–335).
  • Cunha, R. M. (2011). Development and evaluation of a computer game to teach vocabulary to children with autism [Desenvolvimento e avaliação de um jogo de computador para ensino de vocabulário para crianças com autism]. In Proceedings of Games for Change.
  • Dahiya, A. V., DeLucia, E., McDonnell, C. G., & Scarpa, A. (2021). A systematic review of technological approaches for autism spectrum disorder assessment in children: Implications for the COVID-19 pandemic. Research in Developmental Disabilities, 109. https://doi.org/10.1016/j.ridd.2021.103852
  • Daniel, V. L. T., Ting, H., Photchara, R., & Haruo, T. (2019). An AR puzzle application for improving emotion recognition for as children. In Proceedings of the 2019 the 3rd International Conference on Digital Technology in Education (pp. 52–56).
  • Dantas, A. C., Melo, S. de, Neves, L., Milessi, T., & Nascimento, M. Z. do. (2020). Michelzinho: Serious game to teach emotional skills to people with autism or intellectual disorder [Michelzinho: Jogo sério para o ensino de habilidades emocionais em pessoas com autismo ou deficiência intellectual]. In Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-Sbie) (Vol. 30, p. 644).
  • Dapogny, A., Grossard, C., Hun, S., Serret, S., Bourgeois, J., Jean-Marie, H., Foulon, P., Ding, H., Chen, L., Dubuisson, S., Grynszpan, O., Cohen, D., & Bailly, K. (2018). JEMImE: A serious game to teach children with ASD how to adequately produce facial expressions. In 2018 13th IEEE International Conference on Automatic Face Gesture Recognition (FG 2018) (pp. 723–730). https://doi.org/10.1109/FG.2018.00114
  • Dragomir, M., Manches, A., Fletcher-Watson, S., & Pain, H. (2018). Facilitating pretend play in autistic children: Results from an augmented reality app evaluation. In Proceedings of the 20th International ACM SIGACCESS Conference on Computers and Accessibility (pp. 407–409).
  • Duncan, A. W., & Bishop, S. L. (2015). Understanding the gap between cognitive abilities and daily living skills in adolescents with autism spectrum disorders with average intelligence. Autism, 19(1), 64–72. https://doi.org/10.1177/1362361313510068
  • Duval, J., Rubin, Z., Segura, E. M., Friedman, N., Zlatanov, M., Yang, L., & Kurniawan, S. (2018). Spokeit: Building a mobile speech therapy experience. In Proceedings of the 20th International Conference on Human–Computer Interaction with Mobile Devices and Services (pp. 1–12).
  • Ern, A. M. (2014). [The use of gamification and serious games within interventions for children with autism spectrum disorder] [B.S. thesis]. University of Twente.
  • Fan, M., Fan, J., Jin, S., Antle, A. N., & Pasquier, P. (2018). Emostory: A game-based system supporting children’s emotional development. In Extended Abstracts of the 2018 CHI Conference on Human Factors in Computing Systems (pp. 1–6).
  • Finkelstein, S., Barnes, T., Wartell, Z., & Suma, E. A. (2013). Evaluation of the exertion and motivation factors of a virtual reality exercise game for children with autism. In 2013 1st Workshop on Virtual and Augmented Assistive Technology (VAAT) (pp. 11–16).
  • Finkelstein, S., Nickel, A., Barnes, T., & Suma, E. A. (2010). Astrojumper: Motivating children with autism to exercise using a VR game. In CHI’10 Extended Abstracts on Human Factors in Computing Systems (pp. 4189–4194).
  • Francisco Adelton, A.-R., Itaúna, S. P. Á., & Vanessa, O.-R. (2019). Educational game applied in the daily life of children with autistic spectrum disorder. In 2019 14th Iberian Conference on Information Systems and Technologies (CISTI) (pp. 1–5).
  • Frutos, M., Bustos, I., Zapirain, B. G., & Zorrilla, A. M. (2011). Computer game to learn and enhance speech problems for children with autism. In 2011 16th International Conference on Computer Games (CGAMES) (pp. 209–216).
  • Garcia-Garcia, J. M., Cabañero, M. D M., Penichet, V. M., & Lozano, M. D. (2019). Emotea: Teaching children with autism spectrum disorder to identify and express emotions. In Proceedings of the XX International Conference on Human Computer Interaction (pp. 1–8).
  • García-Redondo, P., García, T., Areces, D., Núñez, J. C., & Rodríguez, C. (2019). Serious games and their effect improving attention in students with learning disabilities. International Journal of Environmental Research and Public Health, 16(14). https://doi.org/10.3390/ijerph16142480
  • Garzotto, F., Gelsomini, M., Oliveto, L., & Valoriani, M. (2014). Motion-based touchless interaction for ASD children: A case study. In Proceedings of the 2014 International Working Conference on Advanced Visual Interfaces (pp. 117–120).
  • Giacolini, L., Marti, P., & Iacono, I. (2015). Game of stimuli: An exploratory tangible interface designed for autism. In Proceedings of the European Conference on Cognitive Ergonomics 2015 (pp. 1–2).
  • Giusti, L., Zancanaro, M., Gal, E., & Weiss, P. L. (2011). Dimensions of collaboration on a tabletop interface for children with autism spectrum disorder. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems (pp. 3295–3304).
  • Glaser, N., & Schmidt, M. (2021). Systematic literature review of virtual reality intervention design patterns for individuals with autism spectrum disorders. International Journal of Human–Computer Interaction, 38(8), 1–36. https://doi.org/10.1080/10447318.2021.1970433
  • Gobbo, M. R. M., Barbosa, C. R. S. C., & Mafort, F. (2018). An app designed for the literacy of children with autistic spectrum disorder. In 2018 XLIV Latin American Computer Conference (CLEI) (pp. 309–317). https://doi.org/10.1109/CLEI.2018.00045
  • Gobbo, M. R. D. M., Barbosa, C. R. S. C. D., Morandini, M., & Mafort, F. (2019). Application for vocabulary gain and literacy aid aimed at children with autism spectrum disorder [Aplicativo para ganho de vocabulário e auxílio na alfabetização destinado às crianças com transtorno do espectro autista]. In Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-Sbie) (Vol. 30, p. 1111).
  • Golestan, S., Mahmoudi-Nejad, A., & Moradi, H. (2019). A framework for easier designs: Augmented intelligence in serious games for cognitive development. IEEE Consumer Electronics Magazine, 8(1), 19–24. https://doi.org/10.1109/MCE.2018.2867970
  • Gomez, J., Jaccheri, L., Torrado, J. C., & Montoro, G. (2018). Leo con lula, introducing global reading methods to children with ASD. In Proceedings of the 17th ACM Conference on Interaction Design and Children (pp. 420–426).
  • Gotsis, M., Piggot, J., Hughes, D., & Stone, W. (2010). Smart-games: A video game intervention for children with autism spectrum disorders. In Proceedings of the 9th International Conference on Interaction Design and Children (pp. 194–197).
  • Guerra, E., & Furtado, F. (2013). A proposal software for multidisciplinary treatment of autistic children. In 2013 8th Iberian Conference on Information Systems and Technologies (CISTI) (pp. 1–6).
  • Harrold, N., Tan, C. T., Rosser, D., & Leong, T. W. (2014). Copyme: A portable real-time feedback expression recognition game for children. In CHI’14 Extended Abstracts on Human Factors in Computing Systems (pp. 1195–1200).
  • Hassan, A., Pinkwart, N., & Shafi, M. (2021). Serious games to improve social and emotional intelligence in children with autism. Entertainment Computing, 38. https://doi.org/10.1016/j.entcom.2021.100417.
  • Hassan, A. Z., Zahed, B. T., Zohora, F. T., Moosa, J. M., Salam, T., Rahman, M. M., Ferdous, H. S., & Ahmed, S. I. (2011). Developing the concept of money by interactive computer games for autistic children. In 2011 IEEE International Symposium on Multimedia (pp. 559–564). https://doi.org/10.1109/ISM.2011.99
  • Hiniker, A., Daniels, J. W., & Williamson, H. (2013). Go go games: Therapeutic video games for children with autism spectrum disorders. In Proceedings of the 12th International Conference on Interaction Design and Children (pp. 463–466).
  • Hughes, D. E., Vasquez, E., & Nicsinger, E. (2016). Improving perspective taking and empathy in children with autism spectrum disorder. In 2016 IEEE International Conference on Serious Games and Applications for Health (SEGAH) (pp. 1–5).
  • Iyer, S., Mishra, R. S., Kulkami, S. P., & Kalbande, D. (2017). Assess autism level while playing games. In 2017 2nd International Conference on Communication Systems, Computing and It Applications (CSCITA) (pp. 42–47).
  • Jain, S., Tamersoy, B., Zhang, Y., Aggarwal, J. K., & Orvalho, V. (2012). An interactive game for teaching facial expressions to children with autism spectrum disorders. In 2012 5th International Symposium on Communications, Control and Signal Processing (pp. 1–4).
  • Jouaiti, M., & Henaff, P. (2019). Robot-based motor rehabilitation in autism: A systematic review. International Journal of Social Robotics, 11(5), 753–764. https://doi.org/10.1007/s12369-019-00598-9
  • Kalantarian, H., Jedoui, K., Washington, P., & Wall, D. P. (2018). A mobile game for automatic emotion-labeling of images. IEEE Transactions on Games, 12(2), 213–218. https://doi.org/10.1109/TG.2018.2877325
  • Kamaruzaman, N. N., & Jomhari, N. (2013). Digital game-based learning for low functioning autism children in learning Al-Quran. In 2013 Taibah University International Conference on Advances in Information Technology for the Holy Quran and Its Sciences (pp. 184–189). https://doi.org/10.1109/NOORIC.2013.46
  • Kashani-Vahid, L., Mohajeri, M., Moradi, H., & Irani, A. (2018). Effectiveness of computer games of emotion regulation on social skills of children with intellectual disability. In 2018 2nd National and 1st International Digital Games Research Conference: Trends, Technologies, and Applications (DGRC) (pp. 46–50).
  • Khabbaz, A. H., Pouyan, A. A., Fateh, M., & Abolghasemi, V. (2017). An adaptive RL based fuzzy game for autistic children. In 2017 Artificial Intelligence and Signal Processing Conference (AISP) (pp. 47–52).
  • Khowaja, K., Banire, B., Al-Thani, D., Sqalli, M. T., Aqle, A., Shah, A., & Salim, S. (2020). Augmented reality for learning of children and adolescents with autism spectrum disorder (ASD): A systematic review. IEEE Access, 8, 78779–78807. https://doi.org/10.1109/ACCESS.2020.2986608
  • Kitchenham, B. (2004, July). Procedures for performing systematic reviews (Tech. Rep. No. TR/SE-0401 and NICTA Technical Report 0400011T.1). Keele University.
  • Koirala, A., Yu, Z., Schiltz, H., Van Hecke, A., Koth, K. A., & Zheng, Z. (2019). An exploration of using virtual reality to assess the sensory abnormalities in children with autism spectrum disorder. In Proceedings of the 18th ACM International Conference on Interaction Design and Children (pp. 293–300).
  • Kołakowska, A., Landowska, A., & Karpienko, K. (2017). Gyroscope-based game revealing progress of children with autism. In Proceedings of the 2017 International Conference on Machine Learning and Soft Computing (pp. 19–24).
  • Kousar, S., Mehmood, N., & Ahmed, S. (2019, July). Serious games for autism children: A comparative study. University of Sindh Journal of Information and Communication Technology, 3(3), 162–170. https://sujo2.usindh.edu.pk/index.php/USJICT/article/view/291
  • Kurniawati, A., Kusumaningsih, A., & Hasan, I. (2019). Class VR: Learning class environment for special educational needs using virtual reality games. In 2019 International Conference on Computer Engineering, Network, and Intelligent Multimedia (CENIM) (pp. 1–5).
  • Li, B., Atyabi, A., Kim, M., Barney, E., Ahn, A. Y., Luo, Y., Aubertine, M., Corrigan, S., St. John, T., Wang, Q., Mademtzi, M., Best, M., & Shic, F. (2018). Social influences on executive functioning in autism: Design of a mobile gaming platform. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems (pp. 1–13).
  • Loiacono, T., Trabucchi, M., Messina, N., Matarazzo, V., Garzotto, F., & Beccaluva, E. A. (2018). Social matchup- a memory-like virtual reality game for the enhancement of social skills in children with neurodevelopmental disorders. In Extended Abstracts of the 2018 CHI Conference on Human Factors in Computing Systems (pp. 1–6).
  • Lopez-Herrejon, R. E., Poddar, O., Herrera, G., & Sevilla, J. (2020). Customization support in computer-based technologies for autism: A systematic mapping study. International Journal of Human–Computer Interaction, 36(13), 1273–1290. https://doi.org/10.1080/10447318.2020.1731673
  • Marchi, E., Schuller, B., Baird, A., Baron-Cohen, S., Lassalle, A., O’Reilly, H., Pigat, D., Robinson, P., Davies, I., Baltrušaitis, T., Adams, A., Mahmoud, M., Golan, O., Fridenson-Hayo, S., Tal, S., Newman, S., Meir-Goren, N., Camurri, A., Piana, S., Bölte, S., Sezgin, M., Alyuz, N., Rynkiewicz, A., & Baranger, A. (2019). The asc-inclusion perceptual serious gaming platform for autistic children. IEEE Transactions on Games, 11(4), 328–339. https://doi.org/10.1109/TG.2018.2864640
  • Marwecki, S., Rädle, R., & Reiterer, H. (2013). Encouraging collaboration in hybrid therapy games for autistic children. In CHI’13 Extended Abstracts on Human Factors in Computing Systems (pp. 469–474).
  • Matson, J. L., & Goldin, R. L. (2013). Comorbidity and autism: Trends, topics and future directions. Research in Autism Spectrum Disorders, 7(10), 1228–1233. https://doi.org/10.1016/j.rasd.2013.07.003
  • Mei, C., & Guo, R. (2018). Enable an innovative prolonged exposure therapy of attention deficits on autism spectrum through adaptive virtual environments. In 2018 10th International Conference on Virtual Worlds and Games for Serious Applications (VS-Games) (pp. 1–4).
  • Mei, C., Zahed, B. T., Mason, L., & Ouarles, J. (2018). Towards joint attention training for children with ASD-A VR game approach and eye gaze exploration. In 2018 IEEE Conference on Virtual Reality and 3D User Interfaces (VR) (pp. 289–296).
  • Mir, H. Y., & Khosla, A. K. (2018). Kinect based game for improvement of sensory, motor and learning skills in autistic children. In 2018 Second International Conference on Intelligent Computing and Control Systems (ICICCS) (pp. 1670–1674).
  • Mohd, C. K. N. C. K., Shahbodin, F., Jano, Z., & Azni, A. (2019). Visual perception games for autistic learners: Design & development. In Proceedings of the 2019 Asia Pacific Information Technology Conference (pp. 5–11).
  • Morris, R. R., Kirschbaum, C. R., & Picard, R. W. (2010). Broadening accessibility through special interests: A new approach for software customization. In Proceedings of the 12th International ACM SIGACCESS Conference on Computers and Accessibility (pp. 171–178).
  • Moura, D., Oliveira Filh, D. L. S. de, Laertius, D., Silva, A. J. G., Paiva, P., de Sales, T. de, Cavalcante, R., & Queiroz, F. (2016). Teo: An interactive game suite to support the treatment of children with autism [Teo: Uma suíte de jogos interativos para apoio ao tratamento de crianças com autism]. In Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-Sbie) (Vol. 27, p. 627).
  • Neto, O. P. S., Sousa, V. H. V., Batista, G. B., Santana, F. C. B. G., & Junior, J. M. B. O. (2013). G-tea: A tool to support learning for children with autism spectrum disorder, based on the aba methodology [G-tea: Uma ferramenta no auxílio da aprendizagem de crianças com transtorno do espectro autista, baseada na metodologia aba]. In SBC–Proceedings of SBGames.
  • Noor, H. A. M., Shahbodin, F., & Pee, N. C. (2012). Serious game for autism children: Review of literature. World Academy of Science, Engineering and Technology, 6(4), 554–559. https://doi.org/10.5281/zenodo.1333272
  • Paternò, F., & Wulf, V. (2017). New perspectives in end-user development. Springer.
  • Piana, S., Malagoli, C., Usai, M. C., & Camurri, A. (2019). Effects of computerized emotional training on children with high functioning autism. IEEE Transactions on Affective Computing, 12(4), 1045–1054. https://doi.org/10.1007/s10803-019-04135-5
  • Pistoljevic, N., & Hulusic, V. (2017). An interactive e-book with an educational game for children with developmental disorders: A pilot user study. In 2017 9th International Conference on Virtual Worlds and Games for Serious Applications (VS-Games) (pp. 87–93).
  • Porayska-Pomsta, K., Alcorn, A. M., Avramides, K., Beale, S., Bernardini, S., Foster, M. E., Frauenberger, C., Good, J., Guldberg, K., Keay-Bright, W., Kossyvaki, L., Lemon, O., Mademtzi, M., Menzies, R., Pain, H., Rajendran, G., Waller, A., Wass, S., & Smith, T. J. (2018). Blending human and artificial intelligence to support autistic children’s social communication skills. ACM Transactions on Computer–Human Interaction, 25(6), 1–35. https://doi.org/10.1145/3271484
  • Rahman, M. M., Ferdous, S., & Ahmed, S. I. (2010). Increasing intelligibility in the speech of the autistic children by an interactive computer game. In 2010 IEEE International Symposium on Multimedia (pp. 383–387). https://doi.org/10.1109/ISM.2010.64
  • Rambhia, T., Dhodi, M., Patel, V., & Kalbande, D. (2018). Design of an intelligent system for autism. In 2018 International Conference on Communication Information and Computing Technology (ICCICT) (pp. 1–8).
  • Rapela, J., Lin, T.-Y., Westerfield, M., Jung, T.-P., & Townsend, J. (2012). Assisting autistic children with wireless EOG technology. In Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference (Vol. 2012, pp. 3504–3506). https://doi.org/10.1109/EMBC.2012.6346721
  • Ribeiro, P. C., Araujo, B. B. P. L. de, & Raposo, A. (2014). Comfim: A cooperative serious game to encourage the development of communicative skills between children with autism. In 2014 Brazilian Symposium on Computer Games and Digital Entertainment (pp. 148–157).
  • Ringland, K. E., Wolf, C. T., Boyd, L., Brown, J. K., Palermo, A., Lakes, K., & Hayes, G. (2019). Dancecraft: A whole-body interactive system for children with autism. In The 21st International ACM SIGACCESS Conference on Computers and Accessibility (pp. 572–574). Association for Computing Machinery. https://doi.org/10.1145/3308561.3354604
  • Ritterfeld, U., Cody, M., & Vorderer, P. (2009). Serious games: Mechanisms and effects. Routledge.
  • Rodrigues, J. H., Silva, L., & Bellon, O. R. P. (2018). Transferring facial expression to animated avatars: Assisting children with autism spectrum disorder [Transferência de expressão facial para avatares animados: Auxiliando crianças com transtorno do espectro autista]. In XVII Brazilian Symposium on Computer Games and Digital Entertainment (SBGames).
  • Rouhi, A., Spitale, M., Catania, F., Cosentino, G., Gelsomini, M., & Garzotto, F. (2019). Emotify: Emotional game for children with autism spectrum disorder based-on machine learning. In Proceedings of the 24th International Conference on Intelligent User Interfaces: Companion (pp. 31–32).
  • Ruiz-Rodriguez, A., Martinez-Garcia, A. I., & Caro, K. (2019). Gesture-based video games to support fine-motor coordination skills of children with autism. In Proceedings of the 18th ACM International Conference on Interaction Design and Children (pp. 610–615).
  • Sharma, S., Varkey, B., Achary, K., Hakulinen, J., Turunen, M., Heimonen, T., Srivastava, S., & Rajput, N. (2018). Designing gesture-based applications for individuals with developmental disabilities: Guidelines from user studies in India. ACM Transactions on Accessible Computing (TACCESS), 11(1), 1–27. https://doi.org/10.1145/3161710
  • Silva, G. F. M., & Raposo, A. B. (2016). Identifying awareness requirements in face-to-face collaborative applications for users with autism spectrum disorders. In Anais do Xiii Simpósio Brasileiro de Sistemas Colaborativos (pp. 61–75).
  • Silva, G. M., Souto, J. J. d S., Fernandes, T. P., Bolis, I., & Santos, N. A. (2021). Interventions with serious games and entertainment games in autism spectrum disorder: A systematic review. Developmental Neuropsychology, 46(7), 463–485. https://doi.org/10.1080/87565641.2021.1981905
  • Silva-Calpa, G. F. M., Raposo, A. B., & Suplino, M. (2018). CoASD: A tabletop game to support the collaborative work of users with autism spectrum disorder. In 2018 IEEE 6th International Conference on Serious Games and Applications for Health (SEGAH) (pp. 1–8).
  • Singh, A., Mathur, A., & Hasteer, N. (2019). Bridging learning gap for autism spectrum disorder. In 2019 International Conference on Computing, Communication, and Intelligent Systems (ICCCIS) (pp. 1–6).
  • Sousa, F. R. M., Costa, E. A. B., & Castro, T. H. C. (2012). Worldtour: Software to support teaching of autistic children [Worldtour: Software para suporte no ensino de crianças autistas]. In Brazilian Symposium on Computers in Education (Simpósio Brasileiro de Informática na Educação-Sbie) (Vol. 23).
  • Soysa, A. I., & Al Mahmud, A. (2020). Tangible play and children with ASD in low-resource countries: A case study. In Proceedings of the Fourteenth International Conference on Tangible, Embedded, and Embodied Interaction (pp. 219–225).
  • Spitale, M., Gelsomini, M., Beccaluva, E., Viola, L., & Garzotto, F. (2019). Meeting the needs of people with neuro-developmental disorder through a phygital approach. In Proceedings of the 13th Biannual Conference of the Italian SIGCHI Chapter: Designing the Next Interaction (pp. 1–10).
  • Sturm, D., Peppe, E., & Ploog, B. (2016). Emot-ican: Design of an assessment game for emotion recognition in players with autism. In 2016 IEEE International Conference on Serious Games and Applications for Health (SEGAH) (pp. 1–7).
  • Susi, T., Johannesson, M., & Backlund, P. (2007). Serious games: An overview (Technical Report No. HS-IKI-TR-07-001). University of Skövde, School of Humanities and Informatics.
  • Szucs, V., Egyed, V., Hegedüs, C., Földesi, R., & Lányi, C. S. (2018). Cognitive decision making development support via android application. In 2018 9th IEEE International Conference on Cognitive Infocommunications (Coginfocom) (pp. 000211–000216).
  • Tan, C. T., Harrold, N., & Rosser, D. (2013). Can you copyme? An expression mimicking serious game. In SIGGRAPH Asia 2013 Symposium on Mobile Graphics and Interactive Applications (pp. 1–4).
  • Thordarson, A., & Vilhjálmsson, H. H. (2019). Socuevr: Virtual reality game for social cue detection training. In Proceedings of the 19th ACM International Conference on Intelligent Virtual Agents (pp. 46–48).
  • Tsikinas, S., & Xinogalos, S. (2019a). Design guidelines for serious games targeted to people with autism. In Smart education and e-learning 2019 (pp. 489–499). Springer.
  • Tsikinas, S., & Xinogalos, S. (2019b). Studying the effects of computer serious games on people with intellectual disabilities or autism spectrum disorder: A systematic literature review. Journal of Computer Assisted Learning, 35(1), 61–73. https://doi.org/10.1111/jcal.12311
  • Tsikinas, S., Xinogalos, S., & Satratzemi, M. (2016). Review on serious games for people with intellectual disabilities and autism. In Proceedings of the European Conference on Games-Based Learning, 2016-January (pp. 696–703).
  • Uzuegbunam, N., Wong, W.-H., Cheung, S.-C. S., & Ruble, L. (2015). Mebook: Kinect-based self-modeling intervention for children with autism. In 2015 IEEE International Conference on Multimedia and Expo (ICME) (pp. 1–6).
  • Virnes, M., Kärnä, E., & Vellonen, V. (2015). Review of research on children with autism spectrum disorder and the use of technology. Journal of Special Education Technology, 30(1), 13–27. https://doi.org/10.1177/016264341503000102
  • Wade, J., Sarkar, A., Swanson, A., Weitlauf, A., Warren, Z., & Sarkar, N. (2017). Process measures of dyadic collaborative interaction for social skills intervention in individuals with autism spectrum disorders. ACM Transactions on Accessible Computing (TACCESS), 10(4), 1–19. https://doi.org/10.1145/3107925
  • Weilun, L., Elara, M. R., & Garcia, E. M. A. (2011). Virtual game approach for rehabilitation in autistic children. In 2011 8th International Conference on Information, Communications & Signal Processing (pp. 1–6).
  • Winoto, P., Jane, J. C., Guo, H., & Tang, T. Y. (2019). An interactive play environment on mathematics and cognitive training with behavioral tracking for children with autism. In 2019 IEEE 5th International Conference on Collaboration and Internet Computing (CIC) (pp. 57–60).
  • Winoto, P., & Tang, T. Y. (2019). Collaborative online educational games for children with learning disabilities: Lessons learned. In 2019 IEEE 5th International Conference on Collaboration and Internet Computing (CIC) (pp. 191–195).
  • Wu, S-l., Hsu, M.-H., Shih, C.-T., & Hsu, S.-C. (2019). Multi-mouse single display groupware game & animation developed based on the construction of effective exploration digital game based learning activities to enhance the autism disorder social interactive behaviors. In Proceedings of the 2019 5th International Conference on Education and Training Technologies (pp. 78–82). Association for Computing Machinery. https://doi.org/10.1145/3337682.3337692
  • Xianmei, L. (2017). A review of somatic games intervention for children with autism spectrum disorders. Journal of Exceptional People, 2(11), 83. https://doi.org/10.5281/zenodo.1333272
  • Zakari, H. M., Ma, M., & Simmons, D. (2014). A review of serious games for children with autism spectrum disorders (ASD). In M. Ma, M. F. Oliveira, & J. Baalsrud Hauge (Eds.), Serious games development and applications (pp. 93–106). Springer International Publishing.
  • Zhang, L., Fu, Q., Swanson, A., Weitlauf, A., Warren, Z., & Sarkar, N. (2018). Design and evaluation of a collaborative virtual environment (comove) for autism spectrum disorder intervention. ACM Transactions on Accessible Computing (TACCESS), 11(2), 1–22. https://doi.org/10.1145/3209687
  • Zhao, H., Swanson, A. R., Weitlauf, A. S., Warren, Z. E., & Sarkar, N. (2018). Hand-in-hand: A communication-enhancement collaborative virtual reality system for promoting social interaction in children with autism spectrum disorders. IEEE Transactions on Human-Machine Systems, 48(2), 136–148. https://doi.org/10.1109/THMS.2018.2791562

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