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The working memory Ponzo illusion: Involuntary integration of visuospatial information stored in visual working memory

机译:工作记忆奇闻趣事:视觉工作记忆中视觉空间信息的非自愿整合

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Visual working memory (VWM) has been traditionally viewed as a mental structure subsequent to visual perception that stores the final output of perceptual processing. However, VWM has recently been emphasized as a critical component of online perception, providing storage for the intermediate perceptual representations produced during visual processing. This interactive view holds the core assumption that VWM is not the terminus of perceptual processing; the stored visual information rather continues to undergo perceptual processing if necessary. The current study tests this assumption, demonstrating an example of involuntary integration of the VWM content, by creating the Ponzo illusion in VWM: when the Ponzo illusion figure was divided into its individual components and sequentially encoded into VWM (so that the four lines in Ponzo figure components were never simultaneously presented), the temporally separated components were involuntarily integrated, leading to the distorted length perception of the two horizontal lines. This VWM Ponzo illusion was replicated when the figure components were presented in different combinations and presentation order. The magnitude of the illusion was significantly correlated between VWM and perceptual versions of the Ponzo illusion. These results suggest that the information integration underling the VWM Ponzo illusion is constrained by the laws of visual perception and similarly affected by the common individual factors that govern its perception. Thus, our findings provide compelling evidence that VWM functions as a buffer serving perceptual processes at early stages.
机译:传统上,视觉工作记忆(VWM)被视为视觉结构之后的一种心理结构,该结构存储了感知处理的最终输出。但是,最近已将VWM强调为在线感知的重要组成部分,为视觉处理过程中产生的中间感知表示提供存储。这种交互式视图具有以下核心假设:VWM不是感知处理的终点;如有必要,存储的视觉信息将继续进行感知处理。当前的研究通过在VWM中创建Ponzo幻觉来测试该假设,展示了VWM内容的非自愿整合的示例:当Ponzo幻觉图被划分为各个分量并顺序编码为VWM时(Ponzo中的四行)图形组件从未同时呈现),时间上分离的组件被不自主地整合,导致两条水平线的长度感知失真。当图形组件以不同的组合和呈现顺序呈现时,会复制这种VWM Ponzo幻觉。幻觉的大小在VWM和奇闻趣事幻觉的感知版本之间显着相关。这些结果表明,VWM Ponzo幻觉背后的信息集成受到视觉感知定律的约束,并且同样受到控制其感知的常见个体因素的影响。因此,我们的发现提供了令人信服的证据,表明VWM在早期阶段起着缓冲感官过程的作用。

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