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Investigating Children’s Immersion in a High-Embodied Versus Low-Embodied Digital Learning Game in an Authentic Educational Setting

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Part of the book series: Communications in Computer and Information Science ((CCIS,volume 1044))

Abstract

Prior research has supported that game-based learning is dependent on the degree of immersion achieved, namely the degree to which children become cognitively and emotionally engaged with a given educational digital game. With the emergence of embodied digital educational games, researchers have assumed that the affordances of these games for movement-based interaction may heighten even more experienced immersion. However, there is lack of empirical research on the investigation of children’s immersive experiences in embodied educational games, warranting this claim. Existing research on immersion is still restricted in highly-controlled laboratory settings and focuses on non-educational embodied games played by mostly young adult populations. Extending prior research in the educational context, this study has investigated children’s immersion in a high-embodied digital learning game integrated in an authentic school classroom (Group1 = 24), in comparison to a low-embodied digital version of the game (Group2 = 20). Our findings did not support previous hypotheses regarding experienced immersion in high-embodied digital games; post-interventional surveys indicated that there was no difference in most dimensions of experienced immersion. Interviews with a subset of the children (n = 8 per condition) resulted in the identification of various (a) media form, (b) media content and (c) context-related factors, which provided plausible explanations about children’s experienced immersion in the two conditions. Implications are discussed for supporting immersion in high-embodied educational digital games implemented in authentic educational settings.

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References

  1. Brown, E., Cairns, P.: A grounded investigation of game immersion. In: CHI 2004 Extended Abstracts on Human Factors in Computing Systems, pp. 1297–1300. ACM (2004)

    Google Scholar 

  2. Cheng, M.-T., She, H.-C., Annetta, L.A.: Game immersion experience: its hierarchical structure and impact on game-based science learning. J. Comput. Assist. Learn. 31(3), 232–253 (2015)

    Article  Google Scholar 

  3. Georgiou, Y., Kyza, E.A.: The development and validation of the ARI questionnaire: an instrument for measuring immersion in location-based augmented reality settings. Int. J. Hum. Comput. Studies 98, 24–37 (2017)

    Article  Google Scholar 

  4. Cheng, M.-T., Linm, Y.-W., She, H.-C., Kuo, P.-C.: Is immersion of any value? Whether, and to what extent, game immersion experience during serious gaming affects science learning. Br. J. Edu. Technol. 48, 246–263 (2016)

    Article  Google Scholar 

  5. Georgiou, Y., Kyza, E.A.: Relations between student motivation, immersion and learning outcomes in location-based augmented reality settings. Comput. Hum. Behav. 89, 173–181 (2018)

    Article  Google Scholar 

  6. Georgiou, Y., Kyza, E.A.: A design-based approach to augmented reality location-based activities: investigating immersion in relation to student learning. In: Loizides, F., Papadopoulos, G., Souleles, N. (eds.) 16th World Conference on Mobile and Contextual Learning 2017, mLearn, vol. 1, International Association for Mobile Learning (IAmLearn), Larnaka (2017)

    Google Scholar 

  7. Rowe, J.P., Shores, L.R., Mott, B.W., Lester, J.C.: Integrating learning, problem solving, and engagement in narrative-centered learning environments. Int. J. Artif. Intell. Educ. 21(1–2), 115–133 (2011)

    Google Scholar 

  8. Johnson-Glenberg, M.C., Savio-Ramos, C., Henry, H.: “Alien Health”: a nutrition instruction exergame using the Kinect sensor. Games Health J. 3(4), 241–251 (2014)

    Article  Google Scholar 

  9. Pasch, M., Bianchi-Berthouze, N., van Dijk, B., Nijholt, A.: Immersion in movement-based interaction. In: Nijholt, A., Reidsma, D., Hondorp, H. (eds.) INTETAIN 2009. LNICST, vol. 9, pp. 169–180. Springer, Heidelberg (2009). https://doi.org/10.1007/978-3-642-02315-6_16

    Chapter  Google Scholar 

  10. Bianchi-Berthouze, N.: Understanding the role of body movement in player engagement. Hum.-Comput. Interact. 28(1), 40–75 (2013)

    Google Scholar 

  11. Georgiou, Y., Ioannou, A.: Embodied learning in a digital world: a systematic review of empirical research in K-12 education. In: Díaz, P., Ioannou, A., Spector, M., Bhagat K.-K. (eds.) Learning in a digital world: a multidisciplinary perspective on interactive technologies for formal and informal education. Springer series: Smart Computing and Intelligence. Springer (In press)

    Google Scholar 

  12. Sheu, F.R., Chen, N.S.: Taking a signal: a review of gesture-based computing research in education. Comput. Educ. 78, 268–277 (2014)

    Article  Google Scholar 

  13. Karakostas, A., Palaigeorgiou, G., Kompatsiaris, Y.: WeMake: a framework for letting students create tangible, embedded and embodied environments for their own STEAM learning. In: Kompatsiaris, I., et al. (eds.) INSCI 2017. LNCS, vol. 10673, pp. 3–18. Springer, Cham (2017). https://doi.org/10.1007/978-3-319-70284-1_1

    Chapter  Google Scholar 

  14. Coppi, A.E., Lessiter, J., Freeman, J.: Get in the game: the influence of embodied play on presence and flow in videogames. In: Proceedings of the Interactive Technologies and Games Conference (ITAG), Nottingham (2014)

    Google Scholar 

  15. Lindley, S., Couteur, J.L., Bianchi-Berthouze, N: Stirring up experience through movement in game play: effects on engagement and social behaviour. In: Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, pp. 511–514. ACM (2008)

    Google Scholar 

  16. Baños, R.M., Botella, C., Alcañiz, M., Liaño, V., Guerrero, B., Rey, B.: Immersion and emotion: their impact on the sense of presence. Cyberpsychol. Behav. 7(6), 734–741 (2004)

    Article  Google Scholar 

  17. Bleumers, L., Van Lier, T., Jacobs, A.: Presence and mediated interaction: a means to an end? In: Networked Television Adjunct proceedings of Euro ITV 2009, pp. 104–106 (2009)

    Google Scholar 

  18. Chung, J., Gardner, H.J.: Temporal presence variation in immersive computer games. Int. J. Hum.-Comput. Int. 28(8), 511–529 (2012)

    Article  Google Scholar 

  19. Creswell, J.W., Plano Clark, V.L.: Designing and Conducting Mixed Methods Research. Sage Publications, California (2011)

    Google Scholar 

  20. Johnson-Glenberg, M.C., Hekler, E.B.L.: “Alien Health Game”: an embodied exergame to instruct in nutrition and MyPlate. Games Health J. 2(6), 354–361 (2013)

    Article  Google Scholar 

  21. Johnson-Glenberg, M.C., Birchfield, D.A., Tolentino, L., Koziupa, T.: Collaborative embodied learning in mixed reality motion-capture environments: two science studies. J. Educ. Psychol. 106(1), 86–104 (2014)

    Article  Google Scholar 

  22. Bonanno, P., Kommers, P.A.M.: Exploring the influence of gender and gaming competence on attitudes towards using instructional games. Br. J. Edu. Technol. 39(1), 97–109 (2008)

    Google Scholar 

  23. Bressler, D.M., Bodzin, A.M.: A mixed methods assessment of students’ flow experiences during a mobile augmented reality science game. J. Comput. Assist. Learn. 29(6), 505–517 (2013)

    Article  Google Scholar 

  24. Teo, T., Noyes, J.: Development and validation of a computer attitude measure for young students (CAMYS). Comput. Hum. Behav. 24(6), 2659–2667 (2008)

    Article  Google Scholar 

  25. Braun, V., Clarke, V.: Using thematic analysis in psychology. Qual. Res. Psychol. 3(2), 77–101 (2006)

    Article  Google Scholar 

  26. Anderson, J.L., Wall, S.D.: Kinecting physics: conceptualization of motion through visualization and embodiment. J. Sci. Educ. Technol. 25(2), 161–173 (2016)

    Article  Google Scholar 

  27. Ioannou, M., Georgiou, Y., Ioannou, A., Johnson-Glenberg, M.: On the understanding of students’ learning and perceptions of technology integration in low- and high-embodied group learning. In: Proceedings of the 13th International Conference on Computer Supported Collaborative Learning (2019)

    Google Scholar 

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Acknowledgements

This work is part of the project that has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 739578 (RISE-Call:H2020-WIDESPREAD-01-2016-2017-TeamingPhase2) and the government of the Republic of Cyprus through the Directorate General for European Programmes, Coordination and Development.

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Correspondence to Yiannis Georgiou .

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Georgiou, Y., Ioannou, A., Ioannou, M. (2019). Investigating Children’s Immersion in a High-Embodied Versus Low-Embodied Digital Learning Game in an Authentic Educational Setting. In: Beck, D., et al. Immersive Learning Research Network. iLRN 2019. Communications in Computer and Information Science, vol 1044. Springer, Cham. https://doi.org/10.1007/978-3-030-23089-0_17

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  • DOI: https://doi.org/10.1007/978-3-030-23089-0_17

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