UPSI Digital Repository (UDRep)
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Abstract : Universiti Pendidikan Sultan Idris |
This research involved a systematic and thematic review of literature of studies involving the use of Augmented Reality (AR) in the educational context. Specifically, the review was performed by searching and identifying relevant and recent articles on several leading online databases, which were published from 2014 to 2020. The review yielded 40 articles that discuss various applications of this novel technology. Based on the analysis of their contents, 15 articles are related to multimedia learning involving augmented reality in primary classroom settings. On the other hand, 25 articles discuss studies involving the use of AR in university settings. In terms of content, 18 articles articulate the applications of AR from the explorative perspective, while another 18 articles elaborate the use of AR books in education. By contrast, only 4 articles highlight the use of game-based AR applications in education. The findings of the content analysis carried out suggest that student learning can be improved in AR-enabled learning environments with multimedia elements that provide high interactivity and immersion in which not only students can see and visualize learning objects and contents but also they can readily interact with such three-dimensional visual objects. Arguably, in exploring or navigating and interacting in such environments, students can enhance their cognitive and spatial skills as well. Overall, the above findings provide a greater insight into the understanding of AR characteristics that have a profound impact on the teaching and learning process. ? 2021, Springer Nature Switzerland AG. |
References |
Akçayir, M., Akçayir, G., Pektaş, H. M., & Ocak, M. A. (2016). Augmented reality in science laboratories: The effects of augmented reality on university students' laboratory skills and attitudes toward science laboratories. Computers in Human Behavior, 57, 334-342. doi:10.1016/j.chb.2015.12.054 Alzahrani, N. M. (2020). Augmented reality: A systematic review of its benefits and challenges in e-learning contexts. Applied Sciences (Switzerland), 10(16) doi:10.3390/app10165660 Arulanand, N., RameshBabu, A., & Rajesh, P. K. (2020). Enriched learning experience using augmented reality framework in engineering education. Paper presented at the Procedia Computer Science, , 172 937-942. doi:10.1016/j.procs.2020.05.135 Retrieved from www.scopus.com Baragash, R. S., Al-Samarraie, H., Alzahrani, A. I., & Alfarraj, O. (2020). Augmented reality in special education: A meta-analysis of single-subject design studies. European Journal of Special Needs Education, 35(3), 382-397. doi:10.1080/08856257.2019.1703548 Bektas, K. (2020). Toward A pervasive gaze-contingent assistance system: Attention and context-awareness in augmented reality. Paper presented at the Eye Tracking Research and Applications Symposium (ETRA), doi:10.1145/3379157.3391657 Retrieved from www.scopus.com Buchner, J., & Jeghiazaryan, A. (2020). Work-in-progress-the ARI2VE model for augmented reality books. Paper presented at the Proceedings of 6th International Conference of the Immersive Learning Research Network, iLRN 2020, 287-290. doi:10.23919/iLRN47897.2020.9155110 Retrieved from www.scopus.com Bujak, K. R., Radu, I., Catrambone, R., MacIntyre, B., Zheng, R., & Golubski, G. (2013). A psychological perspective on augmented reality in the mathematics classroom. Computers and Education, 68, 536-544. doi:10.1016/j.compedu.2013.02.017 Chang, S. -., & Hwang, G. -. (2018). Impacts of an augmented reality-based flipped learning guiding approach on students’ scientific project performance and perceptions. Computers and Education, 125, 226-239. doi:10.1016/j.compedu.2018.06.007 Chen, C. -. (2020). AR videos as scaffolding to foster students’ learning achievements and motivation in EFL learning. British Journal of Educational Technology, 51(3), 657-672. doi:10.1111/bjet.12902 Chen, L., Yang, X., Wang, B., Shu, Y., & He, H. (2018). Research on augmented reality system for childhood education reading. Paper presented at the Proceedings of the International Conference on Anti-Counterfeiting, Security and Identification, ASID, , 2018-November 236-239. doi:10.1109/ICASID.2018.8693131 Retrieved from www.scopus.com Cohen, J. (1992). Quantitative methods in psychology: A power primer. Psychological Bulletin, 112(1), 115-159. Retrieved from www.scopus.com Costa, M. C., Manso, A., & Patrício, J. (2020). Design of a mobile augmented reality platform with game-based learning purposes. Information (Switzerland), 11(3) doi:10.3390/info11030127 Donyavi, Z., & Asadi, S. (2020). Diverse training dataset generation based on a multi-objective optimization for semi-supervised classification. Pattern Recognition, 108 doi:10.1016/j.patcog.2020.107543 Ducasse, J. (2020). Augmented reality for outdoor environmental education doi:10.1007/978-3-030-42156-4_17 Retrieved from www.scopus.com Dunleavy, M., Dede, C., & Mitchell, R. (2009). Affordances and limitations of immersive participatory augmented reality simulations for teaching and learning. Journal of Science Education and Technology, 18(1), 7-22. doi:10.1007/s10956-008-9119-1 Erbas, C., & Demirer, V. (2019). The effects of augmented reality on students' academic achievement and motivation in a biology course. Journal of Computer Assisted Learning, 35(3), 450-458. doi:10.1111/jcal.12350 Fan, M., Antle, A. N., & Warren, J. L. (2020). Augmented reality for early language learning: A systematic review of augmented reality application design, instructional strategies, and evaluation outcomes. Journal of Educational Computing Research, 58(6), 1059-1100. doi:10.1177/0735633120927489 Flores-Bascuñana, M., Diago, P. D., Villena-Taranilla, R., & Yáñez, D. F. (2020). On augmented reality for the learning of 3D-geometric contents: A preliminary exploratory study with 6-grade primary students. Education Sciences, 10(1) doi:10.3390/educsci10010004 Gargrish, S., Mantri, A., & Kaur, D. P. (2020). Augmented reality-based learning environment to enhance teaching-learning experience in geometry education. Paper presented at the Procedia Computer Science, , 172 1039-1046. doi:10.1016/j.procs.2020.05.152 Retrieved from www.scopus.com Georgiou, Y., & Kyza, E. A. (2020). Bridging narrative and locality in mobile-based augmented reality educational activities: Effects of semantic coupling on students’ immersion and learning gains. Int J Hum Comput Stud, 2020, 102546. Retrieved from www.scopus.com Habig, S. (2020). Who can benefit from augmented reality in chemistry? sex differences in solving stereochemistry problems using augmented reality. British Journal of Educational Technology, 51(3), 629-644. doi:10.1111/bjet.12891 Hanafi, H. F., Said, C. S., Wahab, M. H., & Samsuddin, K. (2017). Improving students' motivation in learning ICT course with the use of A mobile augmented reality learning environment. Paper presented at the IOP Conference Series: Materials Science and Engineering, , 226(1) doi:10.1088/1757-899X/226/1/012114 Retrieved from www.scopus.com Hanafi, H. F. B., Said, C. S., Ariffin, A. H., Zainuddin, N. A., & Samsuddin, K. (2016). Using a collaborative mobile augmented reality learning application (CoMARLA) to improve improve student learning. Paper presented at the IOP Conference Series: Materials Science and Engineering, , 160(1) doi:10.1088/1757-899X/160/1/012111 Retrieved from www.scopus.com Harun, Tuli, N., & Mantri, A. (2020). Experience fleming's rule in electromagnetism using augmented reality: Analyzing impact on students learning. Paper presented at the Procedia Computer Science, , 172 660-668. doi:10.1016/j.procs.2020.05.086 Retrieved from www.scopus.com Ibáñez, M. B., Uriarte Portillo, A., Zatarain Cabada, R., & Barrón, M. L. (2020). Impact of augmented reality technology on academic achievement and motivation of students from public and private mexican schools. A case study in a middle-school geometry course. Computers and Education, 145 doi:10.1016/j.compedu.2019.103734 İbili, E., Çat, M., Resnyansky, D., Şahin, S., & Billinghurst, M. (2020). An assessment of geometry teaching supported with augmented reality teaching materials to enhance students’ 3D geometry thinking skills. International Journal of Mathematical Education in Science and Technology, 51(2), 224-246. doi:10.1080/0020739X.2019.1583382 Inglese, T., & Korkut, S. (2021). Modeling the instructional design of a language training for professional purposes, using augmented reality doi:10.1007/978-3-030-48332-6_14 Retrieved from www.scopus.com Kanivets, O. V., Kanivets, I. M., Kononets, N. V., Gorda, T. M., & Shmeltser, E. O. (2020). Development of Mobile Applications of Augmented Reality for Projects with Projection Drawings, Retrieved from www.scopus.com Kara, N., & Cagiltay, K. (2020). Smart toys for preschool children: A design and development research. Electronic Commerce Research and Applications, 39 doi:10.1016/j.elerap.2019.100909 Kesim, M., & Ozarslan, Y. (2012). Augmented reality in education: Current technologies and the potential for education. Procedia-Social and Behavioral Sciences, 47(222), 297-302. Retrieved from www.scopus.com Kiryakova, G. (2020). The Immersive Power of Augmented Reality, Retrieved from www.scopus.com Laine, T. H., Nygren, E., Dirin, A., & Suk, H. -. (2016). Science spots AR: A platform for science learning games with augmented reality. Educational Technology Research and Development, 64(3), 507-531. doi:10.1007/s11423-015-9419-0 Maas, M. J., & Hughes, J. M. (2020). Virtual, augmented and mixed reality in K–12 education: A review of the literature. Technology, Pedagogy and Education, 29(2), 231-249. doi:10.1080/1475939X.2020.1737210 Martin, S., Parra, G., Cubillo, J., Quintana, B., Gil, R., Perez, C., & Castro, M. (2020). Design of an augmented reality system for immersive learning of digital electronic. Paper presented at the Proceedings - 2020 14th Technologies Applied to Electronics Teaching Conference, TAEE 2020, doi:10.1109/TAEE46915.2020.9163704 Retrieved from www.scopus.com Mayring, P. (2003). Qualitative Inhaltsanalyse, Retrieved from www.scopus.com Meline, T. (2006). Selecting studies for systematic review: Inclusion and exclusion criteria. Contemporary Issues in Communication Science and Disorders, 33(21-27), 21-27. Retrieved from www.scopus.com Midak, L. Y., Kravets, I. V., Kuzyshyn, O. V., Pahomov, J. D., & Lutsyshyn, V. M. (2020). Augmented Reality Technology within Studying Natural Subjects in Primary School, Retrieved from www.scopus.com Morgan, D. L. (1993). Qualitative content analysis: A guide to paths not taken. Qualitative Health Research, 3(1), 112-121. doi:10.1177/104973239300300107 Morris, N. P., & Lambe, J. (2017). Multimedia interactive eBooks in laboratory bioscience education. Higher Education Pedagogies, 2(1), 28-42. doi:10.1080/23752696.2017.1338531 Muangpoon, T., Osgouei, R. H., Escobar-Castillejos, D., Kontovounisios, C., & Bello, F. (2020). Augmented reality system for digital rectal examination training and assessment: System validation. Journal of Medical Internet Research, 22(8) doi:10.2196/18637 Nechypurenko, P. P., Stoliarenko, V. G., Starova, T. V., Selivanova, T. V., Markova, O. M., Modlo, Y. O., & Shmeltser, E. O. (2020). Development and implementation of educational resources in chemistry with elements of augmented reality. Paper presented at the CEUR Workshop Proceedings, , 2547 156-167. Retrieved from www.scopus.com Pfeiffer, T. (0000). A Context-Aware Assistance Framework for Implicit Interaction with an Augmented Human, Retrieved from www.scopus.com Pigueiras, J., Ruiz-Zafra, A., & Maciel, R. (2020). An augmented reality-based mlearning approach to enhance learning and teaching: A case of study in guadalajara doi:10.1007/978-3-030-52538-5_18 Retrieved from www.scopus.com Priestnall, G. (2020). Augmented reality: Opportunities and challenges. Geography education in the digital world: Linking theory and practice (pp. 155-167) Retrieved from www.scopus.com Radosavljevic, S., Radosavljevic, V., & Grgurovic, B. (2020). The potential of implementing augmented reality into vocational higher education through mobile learning. Interactive Learning Environments, 28(4), 404-418. doi:10.1080/10494820.2018.1528286 Radu, I. (2014). Augmented reality in education: A meta-review and cross-media analysis. Personal and Ubiquitous Computing, 18(6), 1533-1543. doi:10.1007/s00779-013-0747-y Rossing, J. P., Miller, W., Cecil, A. K., & Stamper, S. E. (2012). Ilearning: The Future of Higher Education? Student Perceptions on Learning with Mobile Tablets, Retrieved from www.scopus.com Sahin, D., & Yilmaz, R. M. (2020). The effect of augmented reality technology on middle school students' achievements and attitudes towards science education. Computers and Education, 144 doi:10.1016/j.compedu.2019.103710 Salar, R., Arici, F., Caliklar, S., & Yilmaz, R. M. (2020). A model for augmented reality immersion experiences of university students studying in science education. Journal of Science Education and Technology, 29(2), 257-271. doi:10.1007/s10956-019-09810-x Sampaio, D., & Almeida, P. (2016). Pedagogical strategies for the integration of augmented reality in ICT teaching and learning processes. Paper presented at the Procedia Computer Science, , 100 894-899. doi:10.1016/j.procs.2016.09.240 Retrieved from www.scopus.com Sandelowski, M., & Leeman, J. (2012). Writing usable qualitative health research findings. Qualitative Health Research, 22(10), 1404-1413. doi:10.1177/1049732312450368 Staccini, P. (2020). Serious games, simulations, and virtual patients. Digital innovations in healthcare education and training (pp. 17-27) doi:10.1016/B978-0-12-813144-2.00002-7 Retrieved from www.scopus.com Sucihati, R., Malyan, A. B. J., & Cofriyanti, E. (2020). Augmented reality in the registration flow for enterance eximination at state polytechnic of sriwijaya based on android. Paper presented at the Journal of Physics: Conference Series, , 1500(1) doi:10.1088/1742-6596/1500/1/012128 Retrieved from www.scopus.com Syawaludin, A., Gunarhadi, & Rintayati, P. (2019). Enhancing elementary school students’ abstract reasoning in science learning through augmented reality-based interactive multimedia. Jurnal Pendidikan IPA Indonesia, 8(2), 288-297. doi:10.15294/jpii.v8i2.19249 Triepels, C. P. R., Smeets, C. F. A., Notten, K. J. B., Kruitwagen, R. F. P. M., Futterer, J. J., Vergeldt, T. F. M., & Van Kuijk, S. M. J. (2020). Does three-dimensional anatomy improve student understanding? Clinical Anatomy, 33(1), 25-33. doi:10.1002/ca.23405 Vaismoradi, M., Turunen, H., & Bondas, T. (2013). Content analysis and thematic analysis: Implications for conducting a qualitative descriptive study. Nursing and Health Sciences, 15(3), 398-405. doi:10.1111/nhs.12048 Videnovik, M., Trajkovik, V., Kiønig, L. V., & Vold, T. (2020). Increasing quality of learning experience using augmented reality educational games. Multimedia Tools and Applications, 79(33-34), 23861-23885. doi:10.1007/s11042-020-09046-7 Zafar, S., & Zachar, J. J. (2020). Evaluation of HoloHuman augmented reality application as a novel educational tool in dentistry. European Journal of Dental Education, 24(2), 259-265. doi:10.1111/eje.12492 Zhang, Z., Li, Z., Han, M., Su, Z., Li, W., & Pan, Z. (2021). An augmented reality-based multimedia environment for experimental education. Multimedia Tools and Applications, 80(1), 575-590. doi:10.1007/s11042-020-09684-x Zhu, L., Cao, Q., & Cai, Y. (2020). Development of augmented reality serious games with a vibrotactile feedback jacket. Virtual Reality and Intelligent Hardware, 2(5), 454-470. doi:10.1016/j.vrih.2020.05.005 |
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