暴露于身体尺寸扭曲影响非个人空间的异心距离感知

IF 3.2 2区 心理学 Q1 BEHAVIORAL SCIENCES
Giorgia Tosi , Francesca Frisco , Angelo Maravita , Daniele Romano
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引用次数: 0

摘要

先前的研究表明,身体错觉引起的体型扭曲会影响近空间的空间感知。我们研究了通过类似全身错觉的范式操纵身体大小是否会影响超个人空间中的异心距离感知。参与者在身体错觉之前和之后,分别以解剖学(即虚拟和实际腿对齐)或非解剖学方向(即虚拟腿旋转45度)的标准或大的身体来估计远处空间中地标之间的距离。我们通过多维尺度分析了空间感知的地标配置和距离错误估计。身体在解剖方向上发生,而暴露于更大的身体会增加感知距离,无论身体是否存在。然而,对地标结构的感知没有明显变化。研究结果表明,在非个人空间中,物体之间的距离感知,而不是它们的形状配置,是基于与所见物体相关的度量参考进行缩放的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The exposure to body size distortions affects allocentric distance perception in extra-personal space
Previous research demonstrated that body size distortions induced by body illusion can influence spatial perception in near space. We investigated whether manipulating body size through a Full-Body Illusion-like paradigm influences allocentric distance perception in extra-personal space. Participants estimated the distance between landmarks in far space before and after a body illusion with standard or big bodies in anatomical (i.e., virtual and actual legs were aligned) or non-anatomical orientation (i.e., virtual legs were rotated by 45 degrees). We analysed space perception via Multidimensional Scaling for landmark configuration and distance misestimation. Embodiment occurred with bodies in anatomical orientation, while exposure to bigger bodies increased perceived distance, regardless of the presence of the embodiment. However, no significant changes emerged in the perception of landmark configuration. Findings indicated that, in extra-personal space, the distance perception between objects, rather than their shape configuration, is scaled based on a metric reference related to a seen body.
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来源期刊
Cortex
Cortex 医学-行为科学
CiteScore
7.00
自引率
5.60%
发文量
250
审稿时长
74 days
期刊介绍: CORTEX is an international journal devoted to the study of cognition and of the relationship between the nervous system and mental processes, particularly as these are reflected in the behaviour of patients with acquired brain lesions, normal volunteers, children with typical and atypical development, and in the activation of brain regions and systems as recorded by functional neuroimaging techniques. It was founded in 1964 by Ennio De Renzi.
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