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在工作记忆而非感知过程中,沿着视觉层级逐渐向类别表征过渡。

A gradual transition toward categorical representations along the visual hierarchy during working memory, but not perception.

作者信息

Chunharas Chaipat, Wolff Michael J, Hettwer Meike D, Rademaker Rosanne L

机构信息

Department of Medicine, King Chulalongkorn Memorial Hospital, Chulalongkorn University, Bangkok, Thailand.

Ernst Strüngmann Institute (ESI) for Neuroscience in Cooperation with the Max Planck Society, Frankfurt, Germany.

出版信息

bioRxiv. 2024 Oct 7:2023.05.18.541327. doi: 10.1101/2023.05.18.541327.

Abstract

The ability to stably maintain visual information over brief delays is central to healthy cognitive functioning, as is the ability to differentiate such internal representations from external inputs. One possible way to achieve both is via multiple concurrent mnemonic representations along the visual hierarchy that differ systematically from the representations of perceptual inputs. To test this possibility, we examine orientation representations along the visual hierarchy during perception and working memory. Human participants directly viewed, or held in mind, oriented grating patterns, and the similarity between fMRI activation patterns for different orientations was calculated throughout retinotopic cortex. During direct viewing of grating stimuli, similarity was relatively evenly distributed amongst all orientations, while during working memory the similarity was higher around oblique orientations. We modeled these differences in representational geometry based on the known distribution of orientation information in the natural world: The "veridical" model uses an efficient coding framework to capture hypothesized representations during visual perception. The "categorical" model assumes that different "psychological distances" between orientations result in orientation categorization relative to cardinal axes. During direct perception, the veridical model explained the data well. During working memory, the categorical model gradually gained explanatory power over the veridical model for increasingly anterior retinotopic regions. Thus, directly viewed images are represented veridically, but once visual information is no longer tethered to the sensory world there is a gradual progression to more categorical mnemonic formats along the visual hierarchy.

摘要

在短暂延迟期间稳定保持视觉信息的能力是健康认知功能的核心,区分这种内部表征与外部输入的能力也是如此。实现这两者的一种可能方法是沿着视觉层级通过多个并发的记忆表征,这些表征与感知输入的表征系统地不同。为了测试这种可能性,我们在感知和工作记忆过程中沿着视觉层级检查方向表征。人类参与者直接观看或记住有方向的光栅图案,并在整个视网膜皮层计算不同方向的功能磁共振成像激活模式之间的相似性。在直接观看光栅刺激时,相似性在所有方向上相对均匀地分布,而在工作记忆期间,在倾斜方向周围相似性更高。我们基于自然界中方向信息的已知分布对这些表征几何差异进行建模:“如实”模型使用高效编码框架来捕获视觉感知期间的假设表征。“分类”模型假设方向之间不同的“心理距离”导致相对于基本轴的方向分类。在直接感知期间,如实模型很好地解释了数据。在工作记忆期间,对于视网膜层级越来越靠前的区域,分类模型逐渐比如实模型获得更强的解释力。因此,直接观看的图像被如实表征,但一旦视觉信息不再与感觉世界相连,沿着视觉层级就会逐渐发展为更具分类性的记忆格式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4c0/11458117/403b42be97c0/nihpp-2023.05.18.541327v2-f0001.jpg

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