International Space University, Parc d'Innovation, 1 rue Jean-Dominique Cassini, Illkirch-Graffenstaden F-67400, France.
Neurosci Lett. 2012 Jan 24;507(2):143-6. doi: 10.1016/j.neulet.2011.12.006. Epub 2011 Dec 13.
This experiment investigated whether the perception of depth-reversible figures is altered when the observer is in microgravity or hypergravity. A set of five bi-stable ambiguous figures was presented to ten participants in 1g, 0 g, and 1.8 g during parabolic flight. The figures included static images such as the Necker cube; kinetic depth displays such as a moving plaid and a sphere cluster of moving dots appearing to rotate in one of two directions; and a silhouette photograph. For each stimulus figure, subjects reported which of the two possible perceptual configurations they saw first and then continuously indicated when perceptual reversals occurred for durations ranging from 20 to 30s. The same first percept was reported in 1g, 0 g, and 1.8 g. The time delay for the first reversal between the two possible image interpretations was longer and the number of reversals was fewer in 0 g as compared to 1g for four of the five figures. The opposite effects were seen when going from 0 g to 1.8 g. These findings confirm that, consistent with a multisensory approach to three-dimensional form perception, gravity has a clear effect on the interpretation of depth-based stimuli and this gravity-based component interferes with visual perception stability.
本实验研究了在微重力或超重条件下,观察者对深度可逆图形的感知是否会发生变化。在抛物线飞行中,十名参与者在 1g、0g 和 1.8g 条件下接受了一组五个双稳态的模棱两可的图形。这些图形包括静态图像,如 Necker 立方体;运动深度显示,如移动的棋盘格和一个由运动点组成的球体群,它们似乎以两个方向之一旋转;以及一个剪影照片。对于每个刺激图形,受试者报告他们首先看到的两个可能的感知配置中的哪一个,然后在感知反转发生时连续指示,持续时间从 20 到 30 秒不等。在 1g、0g 和 1.8g 条件下,均报告了相同的第一感知。与 1g 相比,在 0g 条件下,对于五个图形中的四个,两种可能图像解释之间的第一次反转的延迟时间更长,反转次数更少。从 0g 到 1.8g,情况则相反。这些发现证实,与三维形态感知的多感觉方法一致,重力对基于深度的刺激的解释有明显影响,这种基于重力的成分干扰了视觉感知的稳定性。