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Perception of Egocentric Distance during Gravitational Changes in Parabolic Flight

机译:抛物线飞行引力变化过程中自我中心距离的感知

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摘要

We explored the effect of gravity on the perceived representation of the absolute distance of objects to the observers within the range from 1.5–6 m. Experiments were performed on board the CNES Airbus Zero-G during parabolic flights eliciting repeated exposures to short periods of microgravity (0 g), hypergravity (1.8 g), and normal gravity (1 g). Two methods for obtaining estimates of perceived egocentric distance were used: verbal reports and visually directed motion toward a memorized visual target. For the latter method, because normal walking is not possible in 0 g, blindfolded subjects translated toward the visual target by pulling on a rope with their arms. The results showed that distance estimates using both verbal reports and blind pulling were significantly different between normal gravity, microgravity, and hypergravity. Compared to the 1 g measurements, the estimates of perceived distance using blind pulling were shorter for all distances in 1.8 g, whereas in 0 g they were longer for distances up to 4 m and shorter for distances beyond. These findings suggest that gravity plays a role in both the sensorimotor system and the perceptual/cognitive system for estimating egocentric distance.
机译:我们探索了重力对物体到观察者的绝对距离(1.5-6 m)内感知表示的影响。在抛物线飞行期间,在CNES空中客车零重力飞机上进行了实验,引发了反复暴露于短时间的微重力(0 g),超重力(1.8 g)和法向重力(1 g)中的情况。使用了两种方法来获取感知到的自我中心距离的估计值:口头报告和朝着记忆的视觉目标的视觉定向运动。对于后一种方法,因为在0 g中不可能正常行走,所以被蒙住眼睛的对象可以通过用手臂拉动绳索将其移向视觉目标。结果表明,在正常重力,微重力和超重力下,使用口头报告和盲目拉动的距离估计值均存在显着差异。与1 g的测量值相比,在1.8 g的所有距离中,盲目拉动感知距离的估计值都较短,而在0 g时,最大距离为4 m时估计值更长,而超过5 m的距离则更短。这些发现表明,重力在估计自我中心距离的感觉运动系统和知觉/认知系统中都起着作用。

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