A review of using digital game-based learning for preschoolers

Journal of Computers in Education - Tập 10 - Trang 603-636 - 2022
Najmeh Behnamnia1, Amirrudin Kamsin1, Maizatul Akmar Binti Ismail1, Siavash A. Hayati2
1Faculty of Computer Science & Information Technology, University of Malaya, Kuala Lumpur, Malaysia
2Faculty of Electrical Engineering, Tarbiat Modares University, Jalal, Iran

Tóm tắt

In recent years, the use of digital game-based learning (DGBL) in the early childhood learning process has been growing. Recent research shows that DGBL has the potential to create new forms of childhood learning, it is not yet clear how applications can affect young students' learning. There are also not sufficient studies to analyze the significant features of DGBL in this area in early childhood. Therefore, to better understand the impact on childhood DGBL education, this article reviews the systematic literature. This review analyzes 37 articles in this area. In this paper, PRISMA's principles analysis of studies on the characteristics of DGBL technology has been used. The classification focuses on four areas: the objectives of current studies, the impact of technology use on children's learning, learning theories, and assessment methods in DGBL applications. The results of this study show that the use of DGBL can have an active effect on strengthening thinking skills and learning in childhood. This article examines the evolution of this evolving technology, the challenges, and issues posed by DGBL, and discusses how it can be useful for younger students to learn and do more research. This study provides insight for researchers, game designers, and developers in the field of DGBL.

Tài liệu tham khảo

Aladé, F., Lauricella, A. R., Beaudoin-Ryan, L., & Wartella, E. (2016). Measuring with Murray: Touchscreen technology and preschoolers’ STEM learning. Computers in Human Behavior, 62, 433–441. Axelsson, A., Andersson, R., & Gulz, A. (2016). Scaffolding executive function capabilities via play-&-learn software for preschoolers. Journal of Educational Psychology, 108(7), 969. Baccaglini-Frank, A., & Maracci, M. (2015). Multi-touch technology and preschoolers’ development of number-sense. Digital Experiences in Mathematics Education, 1(1), 7–27. Barzilai, S., & Blau, I. (2014). Scaffolding game-based learning: Impact on learning achievements, perceived learning, and game experiences. Computers & Education, 70, 65–79. Behnamnia, N., Kamsin, A., Ismail, M. A. B., & Hayati, A. (2020). The effective components of creativity in digital game-based learning among young children: A case study. Children and Youth Services Review, 116, 105227. Beserra, V., Nussbaum, M., & Oteo, M. (2019). On-task and off-task behavior in the classroom: A study on mathematics learning with educational video games. Journal of Educational Computing Research, 56(8), 1361–1383. Binkley, M., Erstad, O., Herman, J., Raizen, S., Ripley, M., & Runmble, M. (2014). Partnership for 21st century skills. Bus, A. G., Takacs, Z. K., & Kegel, C. A. (2015). Affordances and limitations of electronic storybooks for young children’s emergent literacy. Developmental Review, 35, 79–97. Campos, P., & Pessanha, S. (2011). Designing augmented reality tangible interfaces for kindergarten children. Paper presented at the International Conference on Virtual and Mixed Reality. Cascales, A., Laguna, I., Pérez-López, D., Perona, P., & Contero, M. (2013). 3D Interactive Applications on Tablets for Preschoolers: Exploring the Human Skeleton and the Senses. Paper presented at the European Conference on Technology Enhanced Learning. Castillo, R. P. (2019). Exploring the differential effects of social and individualistic gameplay motivations on bridging social capital for users of a massively multiplayer online game. Computers in Human Behavior, 91, 263–270. Chen, C.-H., & Law, V. (2016). Scaffolding individual and collaborative game-based learning in learning performance and intrinsic motivation. Computers in Human Behavior, 55, 1201–1212. Cook, M. P. (2006). Visual representations in science education: The influence of prior knowledge and cognitive load theory on instructional design principles. Science Education, 90(6), 1073–1091. Crescenzi-Lanna, L. (2020). Emotions, private speech, involvement and other aspects of young children’s interactions with educational apps. Computers in Human Behavior, 111, 106430. Deterding, S., Dixon, D., Khaled, R., & Nacke, L. (2011). From game design elements to gamefulness: defining" gamification". Paper presented at the Proceedings of the 15th international academic MindTrek conference: Envisioning future media environments. Duh, E. S., Koceska, N., & Koceski, S. (2017). Game-based learning: Educational game Azbuka to help young children learn writing Cyrillic letters. Multimedia Tools and Applications, 76(12), 14091–14105. Dukuzumuremyi, S., & Siklander, P. (2018). Interactions between pupils and their teacher in collaborative and technology-enhanced learning settings in the inclusive classroom. Teaching and Teacher Education, 76, 165–174. Goffredo, M., Bernabucci, I., Lucarelli, C., Conforto, S., Schmid, M., Nera, M. M., & Grasselli, B. (2016). Evaluation of a motion-based platform for practicing phonological awareness of preschool children. Journal of Educational Computing Research, 54(5), 595–618. Goldstein, H. (1968). Longitudinal studies and the measurement of change. Journal of the Royal Statistical Society. Series D (The Statistician), 18(2), 93–117. Haake, M., Axelsson, A., Clausen-Bruun, M., & Gulz, A. (2015). Scaffolding mentalizing via a play-&-learn game for preschoolers. Computers & Education, 90, 13–23. Haataja, E., Moreno-Esteva, E. G., Salonen, V., Laine, A., Toivanen, M., & Hannula, M. S. (2019). Teacher’s visual attention when scaffolding collaborative mathematical problem solving. Teaching and Teacher Education, 86, 102877. Hainey, T., Connolly, T. M., Boyle, E. A., Wilson, A., & Razak, A. (2016). A systematic literature review of games-based learning empirical evidence in primary education. Computers & Education, 102, 202–223. Herz, J. C. (1997). Joystick nation: How videogames ate our quarters, won our hearts, and rewired our minds: Atlantic/Little, Brown. Hiniker, A., Sobel, K., Suh, H., & Kientz, J. A. (2016). Hidden symbols: How informal symbolism in digital interfaces disrupts usability for preschoolers. International Journal of Human-Computer Studies, 90, 53–67. Hsiao, H.-S., & Chen, J.-C. (2016). Using a gesture interactive game-based learning approach to improve preschool children’s learning performance and motor skills. Computers & Education, 95, 151–162. Hsu, C.-Y., Tsai, C.-C., & Liang, J.-C. (2011). Facilitating preschoolers’ scientific knowledge construction via computer games regarding light and shadow: The effect of the prediction-observation-explanation (POE) strategy. Journal of Science Education and Technology, 20(5), 482–493. Huber, B., Tarasuik, J., Antoniou, M. N., Garrett, C., Bowe, S. J., Kaufman, J., & Team, S. B. (2016). Young children’s transfer of learning from a touchscreen device. Computers in Human Behavior, 56, 56–64. Hui, L. T., Hoe, L. S., Ismail, H., Foon, N. H., & Michael, G. K. O. (2014). Evaluate children learning experience of multitouch flash memory game. Paper presented at the 2014 4th World Congress on Information and Communication Technologies (WICT 2014). Jesionkowska, J., Wild, F., & Deval, Y. (2020). Active learning augmented reality for STEAM education—A case study. Education Sciences, 10(8), 198. Karime, A., Hossain, M. A., Rahman, A. M., Gueaieb, W., & Alja’am, J. M., & El Saddik, A. (2012). RFID-based interactive multimedia system for the children. Multimedia Tools and Applications, 59(3), 749–774. Karwowski, M., & Beghetto, R. A. (2019). Creative behavior as agentic action. Psychology of Aesthetics, Creativity, and the Arts, 13(4), 402. Kitchenham, B., & Charters, S. (2007). Guidelines for performing systematic literature reviews in software engineering. Konok, V., Liszkai-Peres, K., Bunford, N., Ferdinandy, B., Jurányi, Z., Ujfalussy, D. J., & Miklósi, Á. (2021). Mobile use induces local attentional precedence and is associated with limited socio-cognitive skills in preschoolers. Computers in Human Behavior, 120, 106758. Lazarinis, F., Alexandri, K., Panagiotakopoulos, C., & Verykios, V. S. (2020). Sensitizing young children on internet addiction and online safety risks through storytelling in a mobile application. Education and Information Technologies, 25(1), 163–174. Lee, L., & Tu, X. (2016). Digital media for low-income preschoolers’ effective science learning: A study of iPad instructions with a social development approach. Computers in the Schools, 33(4), 239–252. Liao, C.-W., Chen, C.-H., & Shih, S.-J. (2019). The interactivity of video and collaboration for learning achievement, intrinsic motivation, cognitive load, and behavior patterns in a digital game-based learning environment. Computers & Education, 133, 43–55. Liberati, A., Altman, D. G., Tetzlaff, J., Mulrow, C., Gøtzsche, P. C., Ioannidis, J. P., Clarke, M., Devereaux, P., Kleijnen, J., & Moher, D. (2009). The PRISMA Statement for reporting reviews and meta-analyses of studies that evaluate healthcare interventions: Explanation and elaboration. BMJ, 339, b2700. Lin, L., Shadiev, R., Hwang, W.-Y., & Shen, S. (2020a). From knowledge and skills to digital works: An application of design thinking in the information technology course. Thinking Skills and Creativity, 36, 100646. Lin, S.-Y., Chien, S.-Y., Hsiao, C.-L., Hsia, C.-H., & Chao, K.-M. (2020b). Enhancing Computational Thinking Capability of Preschool Children by Game-based Smart Toys. Electronic Commerce Research and Applications, 44, 101011. Makar, K., Bakker, A., & Ben-Zvi, D. (2015). Scaffolding norms of argumentation-based inquiry in a primary mathematics classroom. ZDM, 47(7), 1107–1120. Marsh, J., Kontovourki, S., Tafa, E., & Salomaa, S. (2017). Developing digital literacy in early years settings: professional development needs for practitioners. A White Paper for COST Action IS1410. Martín-Gutiérrez, J., Mora, C. E., Añorbe-Díaz, B., & González-Marrero, A. (2017). Virtual technologies trends in education. Eurasia Journal of Mathematics, Science and Technology Education, 13(2), 469–486. Mine, M. R. (1995). Virtual environment interaction techniques. UNC Chapel Hill CS Dept. Moher, D. (2009). The PRISMA Statement for reporting reviews and meta-analyses of studies that evaluate healthcare interventions: Explanation and elaboration. BMJ, 339, b2700. Muhonen, H., Rasku-Puttonen, H., Pakarinen, E., Poikkeus, A.-M., & Lerkkanen, M.-K. (2016). Scaffolding through dialogic teaching in early school classrooms. Teaching and Teacher Education, 55, 143–154. Neumann, M. M., & Herodotou, C. (2020). Evaluating YouTube videos for young children. Education and Information Technologies, 25(5), 4459–4475. Nikiforidou, Z., & Pange, J. (2010a). “Shoes and Squares”: A computer-based probabilistic game for preschoolers. Procedia-Social and Behavioral Sciences, 2(2), 3150–3154. Nikiforidou, Z., & Pange, J. (2010b). Teachers’ evaluation of preschool educational software: The case of probabilistic thinking. Procedia-Social and Behavioral Sciences, 9, 537–541. Nizam, D. N. M., & Law, E.L.-C. (2021). Derivation of young children’s interaction strategies with digital educational games from gaze sequences analysis. International Journal of Human-Computer Studies, 146, 102558. Noorhidawati, A., Ghalebandi, S. G., & Hajar, R. S. (2015). How do young children engage with mobile apps? Cognitive, psychomotor, and affective perspective. Computers & Education, 87, 385–395. Passolunghi, M. C., & Costa, H. M. (2016). Working memory and early numeracy training in preschool children. Child Neuropsychology, 22(1), 81–98. Paule-Ruiz, M., Álvarez-García, V., Pérez-Pérez, J. R., Álvarez-Sierra, M., & Trespalacios-Menéndez, F. (2017). Music learning in preschool with mobile devices. Behaviour & Information Technology, 36(1), 95–111. Peralbo-Uzquiano, M., Fernández-Abella, R., Durán-Bouza, M., Brenlla-Blanco, J.-C., & Cotos-Yáñez, J.-M. (2020). Evaluation of the effects of a virtual intervention programme on cognitive flexibility, inhibitory control and basic math skills in childhood education. Computers & Education, 159, 104006. Rideout, V. (2017). The Common Sense census: Media use by kids age zero to eight (pp. 263–283). Common Sense Media. Rogozhkina, I., & Kushnirenko, A. (2011). PiktoMir: Teaching programming concepts to preschoolers with a new tutorial environment. Procedia-Social and Behavioral Sciences, 28, 601–605. Ryokai, K., Farzin, F., Kaltman, E., & Niemeyer, G. (2013). Assessing multiple object tracking in young children using a game. Educational Technology Research and Development, 61(2), 153–170. Schacter, J., & Jo, B. (2016). Improving low-income preschoolers mathematics achievement with Math Shelf, a preschool tablet computer curriculum. Computers in Human Behavior, 55, 223–229. Sella, F., Tressoldi, P., Lucangeli, D., & Zorzi, M. (2016). Training numerical skills with the adaptive videogame “The Number Race”: A randomized controlled trial on preschoolers. Trends in Neuroscience and Education, 5(1), 20–29. Sun, L. P., Siklander, P., & Ruokamo, H. (2018). How to trigger students’ interest in digital learning environments: A systematic literature review. Paper presented at the Seminar. net. Sylla, C., Pereira, I. S. P., Coutinho, C. P., & Branco, P. (2015). Digital manipulatives as scaffolds for preschoolers’ language development. IEEE Transactions on Emerging Topics in Computing, 4(3), 439–449. Tropper, N., Leiss, D., & Hänze, M. (2015). Teachers’ temporary support and worked-out examples as elements of scaffolding in mathematical modeling. ZDM, 47(7), 1225–1240. Utesch, M. C., Faizan, N. D., Krcmar, H., & Heininger, R. (2020). Pic2Program-an Educational Android Application Teaching Computational Thinking. Paper presented at the 2020 IEEE Global Engineering Education Conference (EDUCON). Van de Pol, J., Volman, M., & Beishuizen, J. (2010). Scaffolding in teacher–student interaction: A decade of research. Educational Psychology Review, 22(3), 271–296. van de Sande, E., Segers, E., & Verhoeven, L. (2015). The role of executive control in young children’s serious gaming behavior. Computers & Education, 82, 432–441. Van der Kooy-Hofland, V. A., Bus, A. G., & Roskos, K. (2012). Effects of a brief but intensive remedial computer intervention in a sub-sample of kindergartners with early literacy delays. Reading and Writing, 25(7), 1479. Watts, C. M., Moyer-Packenham, P. S., Tucker, S. I., Bullock, E. P., Shumway, J. F., Westenskow, A., & Jordan, K. (2016). An examination of children’s learning progression shifts while using touch screen virtual manipulative mathematics apps. Computers in Human Behavior, 64, 814–828. Winslow, L. E. (1996). Programming pedagogy—a psychological overview. ACM Sigcse Bulletin, 28(3), 17–22. Yang, J.-C., Lin, M., & Chen, S. (2018). Effects of anxiety levels on learning performance and gaming performance in digital game-based learning. Journal of Computer Assisted Learning, 34(3), 324–334.