Do virtual reality head-mounted displays make a difference? A comparison of presence and self-efficacy between head-mounted displays and desktop computer-facilitated virtual environments
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Shu-Hsuan Chang | Mu-Yen Chen | Yu Shu | Yen-Zhang Huang | Mu-Yen Chen | Shu-Hsuan Chang | Yu Shu | Yen-Zhang Huang
[1] Fred Paas,et al. Preschool Children’s Foreign Language Vocabulary Learning by Embodying Words Through Physical Activity and Gesturing , 2015 .
[2] Amanda H. Waterman,et al. How does enactment affect the ability to follow instructions in working memory? , 2015, Memory & cognition.
[3] Jennifer Ann Rode,et al. Using a large projection screen as an alternative to head-mounted displays for virtual environments , 2000, CHI.
[4] Reuven Lazarowitz,et al. Learning science in a cooperative setting: Academic achievement and affective outcomes , 1994 .
[5] Woodrow Barfield,et al. Presence within Virtual Environments as a Function of Visual Display Parameters , 1996, Presence: Teleoperators & Virtual Environments.
[6] Yu-Ju Lan,et al. Effective Learning Design of Game-Based 3D Virtual Language Learning Environments for Special Education Students , 2018, J. Educ. Technol. Soc..
[7] Adam Hamrol,et al. Application of Professional and Low-cost Head Mounted Devices in Immersive Educational Application☆ , 2015 .
[8] Liyan Song,et al. Digital Game-Based Learning , 2014 .
[9] M. Lombard,et al. Measuring Presence: The Temple Presence Inventory , 2009 .
[10] Tassos Mikropoulos,et al. Investigation of the Relation Between Interaction and Sense of Presence in Educational Virtual Environments , 2010, 2010 International Conference on e-Education, e-Business, e-Management and e-Learning.
[11] C. Heeter. Interactivity in the Context of Designed Experiences , 2000 .
[12] Huei-Tse Hou,et al. Running Tommy©: Developing a Digital Adventure Game Based on Situated Learning to Promote Learners' Concepts of Earthquake Escape , 2012, 2012 IEEE Fourth International Conference On Digital Game And Intelligent Toy Enhanced Learning.
[13] A. Bandura. The Explanatory and Predictive Scope of Self-Efficacy Theory , 1986 .
[14] Tassos A. Mikropoulos,et al. Presence: a unique characteristic in educational virtual environments , 2006, Virtual Reality.
[15] Paul Kane,et al. VERT, a virtual clinical environment, enhances understanding of radiation therapy planning concepts , 2018, Journal of medical radiation sciences.
[16] E. Salas,et al. Application of cognitive, skill-based, and affective theories of learning outcomes to new methods of training evaluation. , 1993 .
[17] Zeynep Tanes,et al. Goal setting outcomes: Examining the role of goal interaction in influencing the experience and learning outcomes of video game play for earthquake preparedness , 2013, Comput. Hum. Behav..
[18] Paul A. Cairns,et al. Measuring and defining the experience of immersion in games , 2008, Int. J. Hum. Comput. Stud..
[19] Mel Slater,et al. A note on presence terminology , 2003 .
[20] R. Mayer,et al. Learning Science in Immersive Virtual Reality , 2018, Journal of Educational Psychology.
[21] John B. Black,et al. Direct manipulation is better than passive viewing for learning anatomy in a three-dimensional virtual reality environment , 2017, Comput. Educ..
[22] Chris Dede,et al. Immersive Interfaces for Engagement and Learning , 2009, Science.
[23] Yu-Ju Lan,et al. Language Learning in Virtual Reality Environments: Past, Present, and Future , 2015, J. Educ. Technol. Soc..
[24] Wei Peng,et al. Effects of screen size, viewing angle, and players' immersion tendencies on game experience , 2012, Comput. Hum. Behav..
[25] Henrik M. Peperkorn,et al. The impact of perception and presence on emotional reactions: a review of research in virtual reality , 2015, Front. Psychol..
[26] Shu-Sheng Liaw,et al. Exploring learner acceptance of the use of virtual reality in medical education: a case study of desktop and projection-based display systems , 2016, Interact. Learn. Environ..
[27] Matthew Lombard,et al. At the Heart of It All: The Concept of Presence , 2006 .
[28] Kiarash Tamaddon,et al. Embodied experiment of levitation in microgravity in a simulated virtual reality environment for science learning , 2017, 2017 IEEE Virtual Reality Workshop on K-12 Embodied Learning through Virtual & Augmented Reality (KELVAR).
[29] Guido Makransky,et al. Development and validation of the Multimodal Presence Scale for virtual reality environments: A confirmatory factor analysis and item response theory approach , 2017, Comput. Hum. Behav..
[30] Yifei Wang,et al. VILLAGE - Virtual Immersive Language Learning and Gaming Environment: Immersion and presence , 2017, Br. J. Educ. Technol..
[31] Susan Persky,et al. Presence Relates to Distinct Outcomes in Two Virtual Environments Employing Different Learning Modalities , 2009, Cyberpsychology Behav. Soc. Netw..
[32] Sarah Sharples,et al. Virtual reality induced symptoms and effects (VRISE): Comparison of head mounted display (HMD), desktop and projection display systems , 2008, Displays.
[33] Samuel S. Silva,et al. Head-mounted display versus desktop for 3D navigation in virtual reality: a user study , 2008, Multimedia Tools and Applications.
[34] Eric R. Muth,et al. The effects of display delay on simulator sickness , 2011, Displays.
[35] Sook-Lei Liew,et al. Transfer of a skilled motor learning task between virtual and conventional environments , 2017, 2017 IEEE Virtual Reality (VR).
[36] John-Paul Mulilis,et al. The effects of a large destructive local earthquake on earthquake preparedness as assessed by an earthquake preparedness scale , 1990 .
[37] Paul A. Cairns,et al. A grounded investigation of game immersion , 2004, CHI EA '04.
[38] James Minogue,et al. Investigating the impact of video games on high school students' engagement and learning about genetics , 2009, Comput. Educ..