Title
Optical distortions in VR bias the perceived slant of moving surfaces
Abstract
The magnifying optics of virtual reality (VR) head-mounted displays (HMD) often cause undesirable pincushion distortion in the displayed imagery. Eccentrically increasing magnification radially displaces image-points away from the optical axis, causing straight lines to curve outwards. This, in turn, should affect the 3D perception of surface shape by warping binocular and monocular depth cues. Previous research has shown that distortion-induced biases in perceived slant do occur in static images. However, most use cases in VR involve moving images. Here we evaluate the impact of motion on biases in perceived slant. An HMD was used to present flat, textured surfaces that varied in slant and were either stationary, or translated laterally by the observer. In separate studies we varied the degree of distortion and evaluated the impact on perceived slant at several locations along the surface. We found that, irrespective of whether the surface was moving or stationary, distortion introduced significant bias into local slant estimates. The pattern of results is consistent with the surface appearing to be concave (as if viewing the inside surface of a bowl), as predicted from the warping of binocular and monocular cues. Importantly, the intermediate distortion level produced the same, but weaker, pattern of biases seen in the fully-distorted condition. When an appropriate level of pre-warping was applied, slant perception was veridical. Overall, our results highlight the importance of sufficiently correcting for optical distortions in VR HMDs to enable veridical perception of surface attitude.
Year
DOI
Venue
2020
10.1109/ISMAR50242.2020.00027
2020 IEEE International Symposium on Mixed and Augmented Reality (ISMAR)
Keywords
DocType
ISSN
Human-centered computing,Virtual reality,Human-centered computing,Empirical studies in HCI,Computing methodologies,Perception,Computing methodologies,Virtual reality
Conference
1554-7868
ISBN
Citations 
PageRank 
978-1-7281-8509-5
1
0.37
References 
Authors
13
3
Name
Order
Citations
PageRank
Jonathan Tong131.44
R. S. Allison2252.99
Laurie M. Wilcox3498.52