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Perception of depth in microgravity during parabolic flight

机译:抛物线飞行中微重力深度的感知

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This investigation examined depth and distance perception of 3-D objects presented in stereoscopic vision. The results obtained in normal gravity and microgravity in parabolic flight were compared. This experiment was performed during an ESA campaign of parabolic flight on the Airbus A300 Zero-G on six free-floating subjects. The subjects were first presented with a 3-D cube and were instructed to adjust one dimension (width, length, or height) of the cube so that all three dimensions had the same perceived length. The subjects perceived a normal cube to be taller, thinner, and shallower in microgravity compared to normal gravity. Consequently, when they adjusted its dimension so that it looked "normal" to them, they made it shorter, wider, and deeper. A simple distance perception test confirmed that the subjects underestimated the distance of objects in the depth plane in microgravity. These results confirm a role of the gravitational reference in the 3-D perception of the objects and the environment.
机译:这项研究检查了立体视觉中呈现的3D对象的深度和距离感知。比较了抛物线飞行中法向重力和微重力的结果。这项实验是在空客A300 Zero-G上进行的ESA抛物线飞行中,对六个自由漂浮的物体进行的。首先向受试者展示一个3-D立方体,并指示他们调整立方体的一个尺寸(宽度,长度或高度),以使所有三个尺寸都具有相同的感知长度。与正常重力相比,受试者觉察到正常立方体的微重力更高,更薄,更浅。因此,当他们调整尺寸以使其看起来对他们“正常”时,他们使它变得更短,更宽,更深。一个简单的距离感知测试证实,受试者在微重力作用下低估了物体在深度平面上的距离。这些结果证实了重力参考在物体和环境的3D感知中的作用。

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