Department of Clinical Neurophysiology, University of Turku and Turku University Hospital, FI-20521, Turku, Finland.
Department of Psychology, University of Turku, Turku, 20014, Finland.
Sci Rep. 2018 Oct 25;8(1):15798. doi: 10.1038/s41598-018-34137-9.
Binocular disparity results in a tangible subjective experience of three-dimensional world, but whether disparity also augments objective perceptual performance remains debated. We hypothesized that the improved coding of depth enabled by binocular disparity allows participants to individuate more objects at a glance as the objects can be more efficiently differentiated from each other and the background. We asked participants to enumerate objects in briefly presented naturalistic (Experiment 1) and artificial (Experiment 2) scenes in immersive virtual reality. This type of enumeration task yields well-documented capacity limits where up to 3-4 items can be enumerated rapidly and accurately, known as subitizing. Our results show that although binocular disparity did not yield a large general improvement in enumeration accuracy or reaction times, it improved participants' ability to process the items right after the limit of perceptual capacity. Binocular disparity also sped-up response times by 27 ms on average when artificial stimuli (cubes) were used. Interestingly, the influence of disparity on subjectively experienced depth revealed a clearly different pattern than the influence of disparity on objective performance. This suggests that the functional and subjective sides of stereopsis can be dissociated. Altogether our results suggest that binocular disparity may increase the number of items the visual system can simultaneously process. This may help animals to better resolve and track objects in complex, cluttered visual environments.
双眼视差导致了对三维世界的真实主观体验,但双眼视差是否能提高客观感知性能仍存在争议。我们假设,由于双眼视差能够更有效地对深度进行编码,因此参与者可以一眼就能区分出更多的物体,因为这些物体可以与背景和其他物体更有效地区分开来。我们要求参与者在沉浸式虚拟现实中快速浏览呈现的自然(实验 1)和人工(实验 2)场景,并对场景中的物体进行计数。这种计数任务会产生有据可查的容量限制,在这种限制下,最多可以快速准确地计数 3-4 个项目,这被称为“心算”。我们的结果表明,尽管双眼视差并没有显著提高计数的准确性或反应时间,但它确实提高了参与者在感知能力限制之后处理项目的能力。当使用人工刺激(立方体)时,双眼视差还平均使反应时间缩短了 27 毫秒。有趣的是,视差对主观体验深度的影响与视差对客观性能的影响呈现出明显不同的模式。这表明立体视觉的功能和主观方面可以分开。总之,我们的结果表明,双眼视差可能会增加视觉系统同时处理的项目数量。这可能有助于动物在复杂、混乱的视觉环境中更好地分辨和跟踪物体。