The Effects of Proprioceptive and Visual Feedback on Geographical Orientation in Virtual Environments
- 1 February 1999
- journal article
- Published by MIT Press in PRESENCE: Virtual and Augmented Reality
- Vol. 8 (1) , 36-53
- https://doi.org/10.1162/105474699566035
Abstract
To effectively use a virtual environment (VE) for applications such as training and design evaluation, a good sense of orientation is needed in the VE. “Natural” human geographical orientation, when moving around in the world, relies on visual as well as proprioceptive feedback. However, the present navigation metaphors that are used to move around in the VE often lack proprioceptive feedback. To investigate the possible consequences this may have, an experiment was conducted on the relative contributions of visual and proprioceptive feedback on path integration in VE. Subjects were immersed in a virtual forest and were asked to turn specific angles under different combinations of visual, vestibular, and kinesthetic feedback (pure visual, visual plus vestibular, visual plus vestibular plus kinesthetic, pure vestibular, and vestibular plus kinesthetic). Furthermore, two visual conditions with different visual flows were tested: normal visual flow and decreased visual flow provided by a 60% zoom. Results show that kinesthetic feedback provides the most reliable and accurate source of information to use for path integration, indicating the benefits of incorporating this kind of feedback in navigation metaphors. Orientation based on visual flow alone is most inaccurate and unreliable. In all conditions, subjects overestimated their turning speed and subsequently didn't turn far enough. Both the absolute errors and the variation in path integration increase with the length of the path.Keywords
This publication has 17 references indexed in Scilit:
- Locomotion Mode Affects the Updating of Objects Encountered During Travel: The Contribution of Vestibular and Proprioceptive Inputs to Path IntegrationPRESENCE: Virtual and Augmented Reality, 1998
- Homing in Virtual Environments: Effects of Field of View and Path LayoutPerception, 1997
- Navigating large virtual spacesInternational Journal of Human–Computer Interaction, 1996
- International survey: virtual-environment researchComputer, 1995
- The role of central and peripheral vision in perceiving the direction of self-motionPerception & Psychophysics, 1992
- Exploration and virtual camera control in virtual three dimensional environmentsACM SIGGRAPH Computer Graphics, 1990
- The relation between horizontality and rod-and-frame and vestibular navigational performance.Journal of Experimental Psychology: Learning, Memory, and Cognition, 1989
- Somatosensory Compensation for Loss of Labyrinthine FunctionActa Oto-Laryngologica, 1984
- Perceived distance and the perceived speed of self-motion: Linear vs. angular velocity?Perception & Psychophysics, 1975
- Foreground and background in dynamic spatial orientationPerception & Psychophysics, 1975