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引力和视网膜参照系塑造了空间记忆。

Gravitational and retinal reference frames shape spatial memory.

机构信息

Department of Psychological Sciences, Birkbeck, University of London.

Institute of Psychology, Otto-von-Guericke University Magdeburg.

出版信息

J Exp Psychol Gen. 2023 Dec;152(12):3433-3439. doi: 10.1037/xge0001441. Epub 2023 Aug 10.

Abstract

When reproducing the remembered location of dots within a circle, judgments are biased toward the center of imaginary quadrants formed by imaginary vertical and horizontal axes. This effect may result from the heightened precision in the visual system for these orientations in a reference frame, or alternately on the internal representation of gravity. We dissociated reference frames defined by the retina and by gravity by having participants locate dots from memory in a circle when their head was upright (aligned with gravity) versus tilted 30° to the left (misaligned with gravity). We mapped the structure of spatial prototypes in a data-driven way using a novel "imaging" procedure. We calculated the rotation of the prototype maps which maximized the similarity between postures, letting us quantify the contribution of each reference frame. Spatial categories are determined by a combination of reference frames, with clear contributions from both gravitational and retinal factors. (PsycInfo Database Record (c) 2023 APA, all rights reserved).

摘要

当再现圆形内记忆中点的位置时,判断会偏向于由想象的垂直和水平轴形成的假想象限的中心。这种效应可能是由于在参考系中这些方向的视觉系统具有更高的精度,或者是由于重力的内部表示。我们通过让参与者在头部直立(与重力对齐)与向左倾斜 30°(与重力不对齐)时从记忆中在圆内定位点,来分离由视网膜和重力定义的参考系。我们使用一种新颖的“成像”程序以数据驱动的方式绘制了空间原型的结构。我们计算了最大化姿势之间相似性的原型图的旋转,从而使我们能够量化每个参考系的贡献。空间类别由参考系的组合决定,其中重力和视网膜因素都有明显的贡献。(PsycInfo 数据库记录(c)2023 APA,保留所有权利)。

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