Nakamura Shinji, Palmisano Stephen, Kim Juno
Inter-Departmental Education Center, Nihon Fukushi University, Mihama, Japan.
School of Psychology, University of Wollongong, New South Wales, Australia.
Iperception. 2016 Aug 5;7(4):2041669516661903. doi: 10.1177/2041669516661903. eCollection 2016 Jul-Aug.
Adding simulated viewpoint jitter or oscillation to displays enhances visually induced illusions of self-motion (vection). The cause of this enhancement is yet to be fully understood. Here, we conducted psychophysical experiments to investigate the effects of different types of simulated oscillation on vertical vection. Observers viewed horizontally oscillating and nonoscillating optic flow fields simulating downward self-motion through an aperture. The aperture was visually simulated to be nearer to the observer and was stationary or oscillating in-phase or counter-phase to the direction of background horizontal oscillations of optic flow. Results showed that vection strength was modulated by the oscillation of the aperture relative to the background optic flow. Vertical vection strength increased as the relative oscillatory horizontal motion between the flow and the aperture increased. However, such increases in vection were only generated when the added oscillations were orthogonal to the principal direction of the optic flow pattern, and not when they occurred in the same direction. The oscillation effects observed in this investigation could not be explained by motion adaptation or different (motion parallax based) effects on depth perception. Instead, these results suggest that the oscillation advantage for vection depends on relative visual motion.
在显示器上添加模拟的视点抖动或振荡会增强视觉诱发的自我运动错觉(视动现象)。这种增强的原因尚未完全理解。在此,我们进行了心理物理学实验,以研究不同类型的模拟振荡对垂直视动现象的影响。观察者通过一个孔径观看模拟向下自我运动的水平振荡和非振荡光流场。该孔径在视觉上被模拟为更靠近观察者,并且相对于光流的背景水平振荡方向静止、同相振荡或反相振荡。结果表明,视动现象的强度受到孔径相对于背景光流的振荡的调制。随着光流与孔径之间相对振荡水平运动的增加,垂直视动现象强度增加。然而,这种视动现象的增加仅在添加的振荡与光流模式的主方向正交时产生,而在它们沿相同方向发生时则不会产生。本研究中观察到的振荡效应无法通过运动适应或对深度感知的不同(基于运动视差的)效应来解释。相反,这些结果表明,视动现象的振荡优势取决于相对视觉运动。