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Crowding in Visual Working Memory Reveals Its Spatial Resolution and the Nature of Its Representations

机译:视觉工作记忆中的拥挤揭示了其空间分辨率及其表示的本质

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Spatial resolution fundamentally limits any image representation. Although this limit has been extensively investigated for perceptual representations by assessing how neighboring flankers degrade the perception of a peripheral target with visual crowding, the corresponding limit for representations held in visual working memory (VWM) is unknown. In the present study, we evoked crowding in VWM and directly compared resolution in VWM and perception. Remarkably, the spatial resolution of VWM proved to be no worse than that of perception. However, mixture modeling of errors caused by crowding revealed the qualitatively distinct nature of these representations. Perceptual crowding errors arose from both increased imprecision in target representations and substitution of flankers for targets. By contrast, VWM crowding errors arose exclusively from substitutions, which suggests that VWM transforms analog perceptual representations into discrete items. Thus, although perception and VWM share a common resolution limit, exceeding this limit reveals distinct mechanisms for perceiving images and holding them in mind.
机译:空间分辨率从根本上限制了任何图像表示。尽管已经通过评估相邻的侧翼如何通过视觉拥挤降低了周围目标的感知能力而对感知表示进行了广泛研究,但是在视觉工作记忆(VWM)中保持的表示的相应极限是未知的。在本研究中,我们诱发了VWM中的拥挤,并直接比较了VWM中的分辨率和感知力。值得注意的是,VWM的空间分辨率证明不比感知的差。但是,由拥挤引起的错误的混合建模揭示了这些表示的性质上截然不同的性质。感知上的拥挤错误是由于目标表示的不精确性增加以及侧翼代替目标引起的。相比之下,VWM拥挤错误完全是由替代引起的,这表明VWM将模拟感知表示转换为离散项。因此,尽管感知和VWM具有相同的分辨率限制,但超过此限制将揭示感知图像并牢记它们的独特机制。

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