參考文獻 |
[1] F. Dai, Virtual Reality for Industrial Applications: Springer-Verlag New York, Inc., 1997.
[2] H. Kaufmann and B. Meyer, "Simulating educational physical experiments in augmented reality," presented at the ACM SIGGRAPH ASIA 2008 educators programme, Singapore, 2008.
[3] S. Greuter and D. J. Roberts, "SpaceWalk: Movement and Interaction in Virtual Space with Commodity Hardware," presented at the Proceedings of the 2014 Conference on Interactive Entertainment, Newcastle, NSW, Australia, 2014.
[4] S. Irawati, S. Hong, J. Kim, and H. Ko, "3D edutainment environment: learning physics through VR/AR experiences," presented at the Proceedings of the 2008 International Conference on Advances in Computer Entertainment Technology, Yokohama, Japan, 2008.
[5] S. E. Lindley, J. L. Couteur, and N. L. Berthouze, "Stirring up experience through movement in game play: effects on engagement and social behaviour," presented at the Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, Florence, Italy, 2008.
[6] E. M. Segura, A. Waern, J. Moen, and C. Johansson, "The design space of body games: technological, physical, and social design," presented at the Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, Paris, France, 2013.
[7] J. Schild, J. Joseph J. LaViola, and M. Masuch, "Altering gameplay behavior using stereoscopic 3D vision-based video game design," presented at the Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, Toronto, Ontario, Canada, 2014.
[8] B. Schmitz, A. Czauderna, R. Klemke, and M. Specht, "Game based learning for computer science education," presented at the Computer Science Education Research Conference, Heerlen, Netherlands, 2011.
[9] A. E. Bowser, D. L. Hansen, J. Raphael, M. Reid, R. J. Gamett, Y. R. He, et al., "Prototyping in PLACE: a scalable approach to developing location-based apps and games," presented at the Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, Paris, France, 2013.
[10] M. Papastergiou, "Digital Game-Based Learning in high school Computer Science education: Impact on educational effectiveness and student motivation," Computers & Education, vol. 52, pp. 1-12, 1// 2009.
[11] Wikipedia contributors. (16 January 2015 14:50 UTC). Stereoscopy. Available: http://en.wikipedia.org/w/index.php?title=Stereoscopy&oldid=642715664
[12] T. Wiegand, G. J. Sullivan, G. Bjontegaard, and A. Luthra, "Overview of the H.264/AVC video coding standard," Circuits and Systems for Video Technology, IEEE Transactions on, vol. 13, pp. 560-576, 2003.
[13] Wikipedia contributors. (22 April 2015 14:37 UTC). Gimbal lock. Available: http://en.wikipedia.org/w/index.php?title=Gimbal_lock&oldid=652054431
[14] R. Terrell. (2012, 5 April 2015 19:16 UTC). UniWii. Available: http://wiki.unity3d.com/index.php/UniWii
[15] P.-H. Tan, S.-W. Ling, and C.-Y. Ting, "Adaptive digital game-based learning framework," presented at the Proceedings of the 2nd international conference on Digital interactive media in entertainment and arts, Perth, Australia, 2007.
[16] P. Wright, D. Mosser-Wooley, and B. Wooley, "Techniques & tools for using color in computer interface design," Crossroads, vol. 3, pp. 3-6, 1997.
[17] G. A. Miller, "The magical number seven, plus or minus two: Some limits on our capacity for processing information," Psychological Review, vol. 63, pp. 81-97, 1956.
[18] J. R. Savery and T. M. Duffy, Problem Based Learning: An instructional model and its constructivist framework, 1994.
[19] N. Takeushi, The knowledge-creating company. New York: Oxford University Press, 1995.
[20] F.-L. Fu, R.-C. Su, and S.-C. Yu, "EGameFlow: A scale to measure learners’ enjoyment of e-learning games," Computers & Education, vol. 52, pp. 101-112, 1// 2009.
[21] R. S. Kennedy, N. E. Lane, K. S. Berbaum, and M. G. Lilienthal, "Simulator Sickness Questionnaire: An Enhanced Method for Quantifying Simulator Sickness," The International Journal of Aviation Psychology, vol. 3, pp. 203-220, 1993/07/01 1993.
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