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视觉拥挤的有限中介:表面完成无法支持去拥挤化。

Limited midlevel mediation of visual crowding: Surface completion fails to support uncrowding.

机构信息

Department of Psychological and Brain Sciences, University of Iowa, Iowa City, IA, USA.

出版信息

J Vis. 2024 Jan 2;24(1):11. doi: 10.1167/jov.24.1.11.

Abstract

Visual crowding refers to impaired object recognition that is caused by nearby stimuli. It increases with eccentricity. Image-level explanations of crowding maintain that it is caused by information loss within early encoding processes that vary in functionality with eccentricity. Alternative explanations maintain that the interference is not limited to two-dimensional image-level interactions but that it is mediated within representations that reflect three-dimensional scene structure. Uncrowding refers to when adding stimulus information to a display, which increases the noise at an image level, nonetheless decreasing the amount of crowding that occurs. Uncrowding has been interpreted as evidence of midlevel mediation of crowding because the additional information tends to provide an opportunity for perceptually organizing stimuli into distinct and therefore protected representations. It is difficult, however, to rule out image-level explanations of crowding and uncrowding when stimulus differences exist between conditions. We adapted displays of a specific form of uncrowding to minimize stimulus differences across conditions, while retaining the potential for perceptual organization, specifically perceptual surface completion. Uncrowding under these conditions would provide strong support for midlevel mediation of crowding. In five experiments, however, we found no evidence of midlevel mediation of crowding, indicating that at least for this version of uncrowding, image-level explanations cannot be ruled out.

摘要

视觉拥挤是指由于附近的刺激物而导致的物体识别受损。它随离中心的距离增加而增加。图像级解释认为拥挤是由于早期编码过程中的信息丢失引起的,而这些信息丢失的功能随离中心的距离而变化。替代解释认为,干扰不仅限于二维图像级相互作用,而是在反映三维场景结构的表示中进行介导。去拥挤是指在显示中添加刺激信息,这会增加图像水平的噪声,但会减少发生的拥挤量。去拥挤被解释为拥挤的中间介导的证据,因为额外的信息往往提供了一个机会,将刺激组织成不同的、因此受到保护的表示。然而,当条件之间存在刺激差异时,很难排除拥挤和去拥挤的图像级解释。我们改编了一种特定形式的去拥挤显示,以最大限度地减少条件之间的刺激差异,同时保留知觉组织的可能性,特别是知觉表面完成。在这些条件下的去拥挤将为拥挤的中间介导提供强有力的支持。然而,在五项实验中,我们没有发现拥挤的中间介导的证据,这表明,至少对于这种去拥挤形式,不能排除图像级解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b31c/10839818/c3edf2c53c0a/jovi-24-1-11-f001.jpg

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