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为火星任务做准备:大脑如何感知新的模拟重力环境。

Getting ready for Mars: How the brain perceives new simulated gravitational environments.

作者信息

Torok Agoston, Gallagher Maria, Lasbareilles Camille, Ferrè Elisa Raffaella

机构信息

1 SZTAKI, MTA, Budapest, Hungary.

2 Department of Psychology, Royal Holloway, University of London, Egham, UK.

出版信息

Q J Exp Psychol (Hove). 2019 Sep;72(9):2342-2349. doi: 10.1177/1747021819839962. Epub 2019 Apr 5.

Abstract

On Earth, we are continually exposed to gravity: sensory signals are constantly integrated to form an internal model of gravity. However, it is unclear whether this internal model is fixed to Earth's gravity or whether it can be applied to a new gravitational environment. Under terrestrial gravity, observers show a "gravitational bias" while judging the speed of falling versus rising objects, as they comply with the physical laws of gravity. We investigated whether this gravitational bias may be present when judging the speed of objects moving upwards or downwards in both virtual reality (VR)-simulated Earth gravity (9.81 m/s) and Mars gravity (3.71 m/s). Our results highlighted a gravitational bias in both Earth and Mars VR-simulated gravity: the speed of downwards movement was more precisely detected than the speed of upwards movement. Although the internal model of gravity has been built up under terrestrial gravity, it can quickly expand to novel non-terrestrial gravitational environments.

摘要

在地球上,我们持续受到重力作用:感官信号不断整合,形成重力的内部模型。然而,目前尚不清楚这个内部模型是固定于地球重力,还是能够应用于新的引力环境。在地球重力作用下,观察者在判断下落物体与上升物体的速度时会表现出“重力偏差”,因为他们遵循重力的物理规律。我们研究了在虚拟现实(VR)模拟的地球重力(9.81米/秒²)和火星重力(3.71米/秒²)环境中判断物体向上或向下运动速度时,这种重力偏差是否会出现。我们的研究结果突出了在地球和火星VR模拟重力环境中均存在重力偏差:向下运动的速度比向上运动的速度能被更精确地检测到。尽管重力的内部模型是在地球重力环境下建立起来的,但它能够迅速扩展到新的非地球引力环境中。

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