一个全中心的人类计时器,用于在地面平面上感知距离.
Liu Zhou1, Wei Wei1,2, Teng Leng Ooi2
1Department of Psychological and Brain Sciences, University of Louisville, Louisville, United States.
eLife
|July 18, 2024
概括
我们的大脑使用一个全中心的空间参考框架来感知行走时的物体位置,防止视觉错觉. 这种空间编码在起点上保持固定,与观察者一起不移动.
科学领域:
- 神经科学是一个神经科学.
- 视觉科学 视觉科学 视觉科学
- 空间认知 空间认知
背景情况:
- 人类在行走时准确地感知静态物体的位置,尽管视网膜图像运动是持续的.
- 大脑必须使视觉流与自我运动相协调,以保持稳定的空间意识.
研究的目的:
- 为了研究用于感知物体位置在移动过程中的空间参考框架.
- 为了确定大脑是否使用自我中心 (以观察者为基础) 或非中心 (以世界为基础) 的框架.
主要方法:
- 参与者从起点走了很短的距离.
- 在黑暗中测量了一个暗暗照明的目标的感知位置.
- 分析了作为空间参考框架的内在偏差.
主要成果:
- 本质偏差仍然固定在最初的"主基地"位置.
- 这种偏心编码甚至在观察者移动后仍然存在.
- 路径集成利用横向运动信号 (主动和被动).
结论:
- 大脑使用一个全中心的空间参考框架,在行走时保持稳定的视觉感知.
- 这种偏心机制对于克服自动运动的光学错觉至关重要.
- 人类中的不对称路径集成反映了沙漠的发现,这表明了保存的自然设计.
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