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Representation of visual numerosity information during working memory in humans: An fMRI decoding study

机译:人类工作记忆中的视觉数量信息的表示:FMRI解码研究

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摘要

Both animal and human studies on numerosity have shown the importance of the parietal cortex for numerosity processing. However, most studies have focused on the perceptual processing of numerosity. Still, it is unclear how and where numerosity information is coded when this information is retained during a working memory delay phase. Such temporal storage could be realized by the same structures as perceptual processes, or be transformed to a more abstract representation, potentially involving prefrontal regions. FMRI decoding studies allow the identification of brain areas that exhibit multi‐voxel activation patterns specific to the content of working memory. Here, we used an assumption‐free searchlight‐decoding approach to test where numerosity‐specific codes can be found during a 12 s retention period. Participants (n = 24) performed a retro‐cue delayed match‐to‐sample task, in which numerosity information was presented as visual dot arrays. We found mnemonic numerosity‐specific activation in the right lateral portion of the intraparietal sulcus; an area well‐known for perceptual processing of numerosity. The applied retro‐cue design dissociated working memory delay activity from perceptual processes and showed that the intraparietal sulcus also maintained working memory representation independent of perception.
机译:对数量的动物和人类研究都表明了顶叶皮质对数值加工的重要性。然而,大多数研究都集中于有价的感知处理。尽管如此,当在工作存储器延迟阶段期间保留该信息时,尚不清楚如何和位置。这种时间存储可以通过与感知过程相同的结构来实现,或者被转换为更摘要的表示,可能涉及前平面区域。 FMRI解码研究允许识别表现出特定于工作记忆含量的多体素激活模式的脑区域。这里,我们使用了一种无假设的探照灯解码方法来测试,其中可以在12秒的保留时段期间找到特定于特定的代码。参与者(n = 24)执行了一种复古提示延迟匹配对样本任务,其中呈现数量信息作为视觉点阵列。我们发现在内腔沟的右侧部分中的助剂数量特异性活化;众所周知,众所周知,用于感知的数量处理。应用的复古提示设计从感知过程中解开了工作记忆延迟活动,并显示了内部沟槽也保持了与感知的工作记忆陈述。

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