Current status, opportunities and challenges of augmented reality in education

Computers & Education - Tập 62 - Trang 41-49 - 2013
Hsin-Kai Wu1, Silvia Wen-Yu Lee2, Hsin-Yi Chang3, Jyh-Chong Liang4
1Graduate Institute of Science Education, National Taiwan Normal University, PO Box 97-27, Taipei 11699, Taiwan
2Graduate Institute of Science Education, National Changhua University of Education, No. 1, Jin-De Road, Changhua 500, Taiwan
3Graduate Institute of Science Education, National Kaohsiung Normal University, No. 62, Shenjhong Rd., Yanchao District, Kaohsiung 82446, Taiwan
4Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, No. 43, Sec. 4, Keelung Rd., Taipei 106, Taiwan

Tài liệu tham khảo

Andújar, 2011, Augmented reality for the improvement of remote laboratories: an augmented remote laboratory, IEEE Transactions on Education, 54, 492, 10.1109/TE.2010.2085047 Argotti, 2002, Dynamic superimposition of synthetic objects on rigid and simple-deformable real objects, Computers & Graphics, 26, 919, 10.1016/S0097-8493(02)00180-2 Arvanitis, 2007, Human factors and qualitative pedagogical evaluation of a mobile augmented reality system for science education used by learners with physical disabilities, Personal and Ubiquitous Computing, 13, 243, 10.1007/s00779-007-0187-7 Azuma, 1997, A survey of augmented reality, Presence-Teleoperators and Virtual Environments, 6, 355, 10.1162/pres.1997.6.4.355 Bergig, O., Hagbi, N., El-Sana, J., & Billinghurst, M. (2009, October). In-place 3D sketching for authoring and augmenting mechanical systems (pp. 87–94). Paper presented at the 8th IEEE international symposium on mixed and augmented reality (ISMAR), Orlando, FL. http://dx.doi.org/10.1109/ISMAR.2009.5336490. Birchfield, 2009, Earth science learning in SMALLab: a design experiment for mixed reality, International Journal of Computer-supported Collaborative Learning, 4, 403, 10.1007/s11412-009-9074-8 Blake, 2009, Agent-customized training for human learning performance enhancement, Computers & Education, 53, 966, 10.1016/j.compedu.2009.05.014 Broll, 2008, Toward next-gen mobile AR games, Computer Graphics and Applications, IEEE, 28, 40, 10.1109/MCG.2008.85 Bronack, 2011, The role of immersive media in online education, Journal of Continuing Higher Education, 59, 113, 10.1080/07377363.2011.583186 Chang, 2012, Integrating a mobile augmented reality activity to contextualize student learning of a socioscientific issue, British Journal of Educational Technology Chen, 2012, Interactive augmented reality system for enhancing library instruction in elementary schools, Computers & Education, 59, 638, 10.1016/j.compedu.2012.03.001 Chen, 2011, Use of tangible and augmented reality models in engineering graphics courses, Journal of Professional Issues in Engineering Education and Practice, 137, 267, 10.1061/(ASCE)EI.1943-5541.0000078 Clark, A., Dünser, A., & Grasset, R. (2011, October). An interactive augmented reality coloring book (pp. 259–260). Paper presented at the 10th IEEE international symposium on mixed and augmented reality (ISMAR), Basel, Swiss. http://dx.doi.org/10.1109/ISMAR.2011.6143487. Copolo, 1995, Using three-dimensional models to teach molecular structures in high school chemistry, Journal of Science Education and Technology, 4, 295, 10.1007/BF02211261 Dede, 2009, Immersive interfaces for engagement and learning, Science, 323, 66, 10.1126/science.1167311 De Lucia, 2012, A collaborative augmented campus based on location-aware mobile technology, International Journal of Distance Education Technologies, 10, 55, 10.4018/jdet.2012010104 Dunleavy, 2009, Affordances and limitations of immersive participatory augmented reality simulations for teaching and learning, Journal of Science Education and Technology, 18, 7, 10.1007/s10956-008-9119-1 El Sayed, 2011, ARSC: augmented reality student card – an augmented reality solution for the education field, Computers & Education, 56, 1045, 10.1016/j.compedu.2010.10.019 Enyedy, 2012, Learning physics through play in an augmented reality environment, International Journal of Computer-supported Collaborative Learning, 7, 347, 10.1007/s11412-012-9150-3 Feng, Z., Duh, H. B.-L., & Billinghurst, M. (2008 September). Trends in augmented reality tracking, interaction and display: A review of ten years of ISMAR. Paper presented at the 7th IEEE/ACM international symposium on mixed and augmented reality (ISMAR), Cambridge, UK. http://dx.doi.org/10.1109/ismar.2008.4637362. Fjeld, M., & Voegtli, B. M. (2002, September). Augmented chemistry: An interactive educational workbench (pp. 259–321). Paper presented at the international symposium on mixed and augmented reality (ISMAR), Darmstadt, Germany. http://dx.doi.org/10.1109/ISMAR.2002.1115100. Hsiao, 2012, Learning while exercising for science education in augmented reality among adolescents, Interactive Learning Environments, 20, 331, 10.1080/10494820.2010.486682 Johnson, 2010, Key emerging technologies for elementary and secondary education, Education Digest, 76, 36 Johnson, 2010, Key emerging technologies for postsecondary education, Education Digest, 76, 34 Kafai, 1995 Kaufmann, 2003, Mathematics and geometry education with collaborative augmented reality, Computers & Graphics, 27, 339, 10.1016/S0097-8493(03)00028-1 Kaufmann, 2005, General training of spatial abilities by geometry education in augmented reality, Cyberpsychology & Behavior, 8, 330 Kerawalla, 2006, “Making it real”: exploring the potential of augmented reality for teaching primary school science, Virtual Reality, 10, 163, 10.1007/s10055-006-0036-4 Kirriemuir, 2003 Klopfer, 2008 Klopfer, 2010, Augmenting your own reality: student authoring of science-based augmented reality games, New Directions for Youth Development, 128, 85, 10.1002/yd.378 Klopfer, 2008, Environmental detectives: the development of an augmented reality platform for environmental simulations, Educational Technology Research and Development, 56, 203, 10.1007/s11423-007-9037-6 Klopfer, 2005, Developing games and simulations for today and tomorrow's tech savvy youth, TechTrends, 49, 33, 10.1007/BF02763645 Klopfer, 2004, Comparative analysis of palm and wearable computers for participatory simulations, Journal of Computer Assisted Learning, 20, 347, 10.1111/j.1365-2729.2004.00094.x Kotranza, A., Lind, D. S., Pugh, C. M., & Lok, B. (2009, October). Real-time in-situ visual feedback of task performance in mixed environments for learning joint psychomotor-cognitive tasks (pp. 125–134). Paper presented at the 8th IEEE international symposium on mixed and augmented reality (ISMAR), Orlando, FL. http://dx.doi.org/10.1109/ISMAR.2009.5336485. Lee, 2011, Internet-based science learning: a review of journal publications, International Journal of Science Education, 33, 1893, 10.1080/09500693.2010.536998 Liu, 2009, A context-aware ubiquitous learning environment for language listening and speaking, Journal of Computer Assisted Learning, 25, 515, 10.1111/j.1365-2729.2009.00329.x Liu, 2009, Outdoor natural science learning with an RFID-supported immersive ubiquitous learning environment, Educational Technology & Society, 12, 161 Liu, W., Cheok, A. D., Mei-Ling, C. L., & Theng, Y.-L. (2007). Mixed reality classroom: Learning from entertainment. Paper presented at the proceedings of the 2nd international conference on digital interactive media in entertainment and arts, Perth, Australia. Martin, 2011, New technology trends in education: seven years of forecasts and convergence, Computers & Education, 57, 1893, 10.1016/j.compedu.2011.04.003 Martin-Gutierrez, 2010, Design and validation of an augmented book for spatial abilities development in engineering students, Computers & Graphics, 34, 77, 10.1016/j.cag.2009.11.003 Mathews, 2010, Using a studio-based pedagogy to engage students in the design of mobile-based media, English Teaching: Practice and Critique, 9, 87 Milgram, 1994, Augmented reality: a class of displays on the reality–virtuality continuum, Proceedings the SPIE: Telemanipulator and Telepresence Technologies, 2351, 282, 10.1117/12.197321 Mitchell, 2011, Alien contact!: exploring teacher implementation of an augmented reality curricular unit, Journal of Computers in Mathematics and Science Teaching, 30, 271 Nagata, 2003, Multitasking and interruptions during mobile web tasks, Proceedings of the Human Factors and Ergonomics Society Annual Meeting, 47, 1341, 10.1177/154193120304701105 Rivet, 2008, Contextualizing instruction: leveraging students' prior knowledge and experiences to foster understanding of middle school science, Journal of Research in Science Teaching, 45, 79, 10.1002/tea.20203 Roda, 2006, Attention aware systems: theories, applications, and research agenda, Computers in Human Behavior, 22, 557, 10.1016/j.chb.2005.12.005 Rosenbaum, 2007, On location learning: authentic applied science with networked augmented realities, Journal of Science Education and Technology, 16, 31, 10.1007/s10956-006-9036-0 Shaffer, 1999, “Thick” authenticity: new media and authentic learning, Journal of Interactive Learning Research, 10, 195 Sotiriou, 2008, Visualizing the invisible: augmented reality as an innovative science education scheme, Advanced Science Letters, 1, 114, 10.1166/asl.2008.012 Squire, 2007, Mad city mystery: developing scientific argumentation skills with a place-based augmented reality game on handheld computers, Journal of Science Education and Technology, 16, 5, 10.1007/s10956-006-9037-z Squire, 2007, Augmented reality simulations on handheld computers, Journal of the Learning Sciences, 16, 371, 10.1080/10508400701413435 Wu, 2007, Ninth grade student engagement in teacher-centered and student-centered technology-enhanced learning environments, Science Education, 91, 727, 10.1002/sce.20216 Wu, 2001, Promoting understanding of chemical representations: students' use of a visualization tool in the classroom, Journal of Research in Science Teaching, 38, 821, 10.1002/tea.1033