Understanding the relationship between cybersickness and usability through seven human factors dimensions: An exploratory comparison of two virtual reality training applications

Author:

Khenak Nawel1ORCID,Bach Cédric1ORCID,Buratto Florence2ORCID

Affiliation:

1. Human design Group, France

2. Airbus Commercial Aircraft, France

Publisher

ACM

Reference78 articles.

1. McGrath, J. L., Taekman, J. M., Dev, P., Danforth, D. R., Mohan, D., Kman, N., & Bond, W. F. (2017). Using Virtual Reality Simulation Environments to Assess Competence for Emergency Medicine Learners. Academic Emergency Medicine.

2. Borsci, S., Lawson, G., & Broome, S. (2015). Empirical evidence, evaluation criteria, and challenges for the effectiveness of virtual and mixed reality tools for training operators of car service maintenance. Computers in Industry, 67, 17-26.

3. Abidi, M. H., Al-Ahmari, A., Ahmad, A., Ameen, W., & Alkhalefah, H. (2019). Assessment of virtual reality-based manufacturing assembly training system. The International Journal of Advanced Manufacturing Technology, 105, 3743-3759.

4. Iván Aguilar Reyes, C., Wozniak, D., Ham, A., & Zahabi, M. (2022, September). An Adaptive Virtual Reality-Based Training System for Pilots. In Proceedings of the Human Factors and Ergonomics Society Annual Meeting (Vol. 66, No. 1, pp. 1962-1966). Sage CA: Los Angeles, CA: SAGE Publications.

5. Piromchai, P., Avery, A., Laopaiboon, M., Kennedy, G., & O'Leary, S. (2015). Virtual reality training for improving the skills needed for performing surgery of the ear, nose, or throat. Cochrane Database of Systematic Reviews, (9).

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