The role of user-centered AR instruction in improving novice spatial cognition in a high-precision procedural task
暂无分享,去创建一个
Yang Wang | Mark Billinghurst | Shusheng Zhang | Xiaoliang Bai | Weiping He | Zhuo Wang | Dong Han | Gong Chen | Jianghong Li | M. Billinghurst | Xiaoliang Bai | Shusheng Zhang | Weiping He | Zhuo Wang | Yang Wang | Dong Han | Gong Chen | Jianghong Li
[1] Shu Han,et al. User-oriented AR assembly guideline: a new classification method of assembly instruction for user cognition , 2020, The International Journal of Advanced Manufacturing Technology.
[2] Frederik Cornillie,et al. Cognitive support for assembly operations by means of augmented reality: an exploratory study , 2020, Int. J. Hum. Comput. Stud..
[3] Zhuo Wang,et al. Information-level real-time AR instruction: a novel dynamic assembly guidance information representation assisting human cognition , 2020, The International Journal of Advanced Manufacturing Technology.
[4] Zhuo Wang,et al. Information-level AR instruction: a novel assembly guidance information representation assisting user cognition , 2020 .
[5] Carl T. Haas,et al. Impact of augmented reality and spatial cognition on assembly in construction , 2019 .
[6] Inki Kim,et al. The effects of augmented reality on improving spatial problem solving for object assembly , 2018, Adv. Eng. Informatics.
[7] Jose Luis Saorin,et al. Virtual Learning Environments to Enhance Spatial Orientation , 2017 .
[8] Ross T. Smith,et al. Cognitive Cost of Using Augmented Reality Displays , 2017, IEEE Transactions on Visualization and Computer Graphics.
[9] A. Y. C. Nee,et al. Multi-modal augmented-reality assembly guidance based on bare-hand interface , 2016, Adv. Eng. Informatics.
[10] Mark Billinghurst,et al. Do You See What I See? The Effect of Gaze Tracking on Task Space Remote Collaboration , 2016, IEEE Transactions on Visualization and Computer Graphics.
[11] Didier Stricker,et al. Cognitive Augmented Reality , 2015, Comput. Graph..
[12] Franco Tecchia,et al. Evaluating virtual reality and augmented reality training for industrial maintenance and assembly tasks , 2015, Interact. Learn. Environ..
[13] James H. Oliver,et al. Augmented Reality-Based Manual Assembly Support With Visual Features for Different Degrees of Difficulty , 2015, Int. J. Hum. Comput. Interact..
[14] Peter E.D. Love,et al. Using Animated Augmented Reality to Cognitively Guide Assembly , 2013, J. Comput. Civ. Eng..
[15] Chin-Chung Tsai,et al. Affordances of Augmented Reality in Science Learning: Suggestions for Future Research , 2012, Journal of Science Education and Technology.
[16] Gordon Baxter,et al. Human factors and ergonomics in consumer product design: methods and techniques , 2012, Ergonomics.
[17] Steven K. Feiner,et al. Augmented reality in the psychomotor phase of a procedural task , 2011, 2011 10th IEEE International Symposium on Mixed and Augmented Reality.
[18] Steven K. Feiner,et al. Exploring the Benefits of Augmented Reality Documentation for Maintenance and Repair , 2011, IEEE Transactions on Visualization and Computer Graphics.
[19] Sonja Stork,et al. Human cognition in manual assembly: Theories and applications , 2010, Adv. Eng. Informatics.
[20] Emanuel Diamant,et al. Unveiling the mystery of visual information processing in human brain , 2008, Brain Research.
[21] Rosemary Luckin,et al. “Making it real”: exploring the potential of augmented reality for teaching primary school science , 2006, Virtual Reality.
[22] Anthony E. Richardson,et al. Development of a self-report measure of environmental spatial ability. , 2002 .
[23] Ronald Azuma,et al. A Survey of Augmented Reality , 1997, Presence: Teleoperators & Virtual Environments.
[24] Irwin N. Jankovic,et al. Principles of spatial problem solving. , 1982 .
[25] P. Johnson-Laird,et al. The mental representation of spatial descriptions , 1982, Memory & cognition.
[26] Rok Vrabič,et al. Displaying Product Manufacturing Information in Augmented Reality for Inspection , 2019, Procedia CIRP.
[27] R. Yilmaz,et al. Augmented Reality for Learning English : Achievement , Attitude and Cognitive Load Levels of Students , 2014 .
[28] S. Hart,et al. Development of NASA-TLX (Task Load Index): Results of Empirical and Theoretical Research , 1988 .
[29] Philip N. Johnson-Laird,et al. Mental Models in Cognitive Science , 1980, Cogn. Sci..