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人类大脑中层次空间的认知地图。

Cognitive maps for hierarchical spaces in the human brain.

作者信息

Peer Michael, Epstein Russell A

机构信息

Department of Psychology, University of Pennsylvania, Philadelphia PA, 19104, USA.

出版信息

bioRxiv. 2025 Feb 5:2025.02.05.636580. doi: 10.1101/2025.02.05.636580.

Abstract

Many of the environments that we navigate through every day are hierarchically organized-they consist of spaces nested within other spaces. How do our mind/brains represent such environments? To address this question, we familiarized participants with a virtual environment consisting of a building within a courtyard, with objects distributed throughout the courtyard and building interior. We then scanned them with fMRI while they performed a memory task that required them to think about spatial relationships within and across the subspaces. Behavioral responses were less accurate and response times were longer on trials requiring integration across the subspaces compared to trials not requiring integration. fMRI response differences between integration and non-integration trials were observed in scene-responsive and medial temporal lobe brain regions, which were correlated the behavioral integration effects in retrosplenial complex, occipital place area, and hippocampus. Multivoxel pattern analyses provided additional evidence for representations in these brain regions that reflected the hierarchical organization of the environment. These results indicate that people form cognitive maps of nested spaces by dividing them into subspaces and using an active cognitive process to integrate the subspaces. Similar mechanisms might be used to support hierarchical coding in memory more broadly.

摘要

我们每天穿梭的许多环境都是层次化组织的——它们由嵌套在其他空间中的空间组成。我们的心智/大脑如何表征这样的环境呢?为了解决这个问题,我们让参与者熟悉了一个虚拟环境,该环境由一个庭院内的一座建筑组成,物体分布在整个庭院和建筑内部。然后,我们在他们执行一项记忆任务时用功能磁共振成像(fMRI)对他们进行扫描,该任务要求他们思考子空间内部和子空间之间的空间关系。与不需要整合的试验相比,在需要跨子空间整合的试验中,行为反应的准确性较低,反应时间较长。在场景反应性和内侧颞叶脑区观察到了整合试验和非整合试验之间的功能磁共振成像反应差异,这些差异与压后皮质、枕叶位置区和海马体中的行为整合效应相关。多体素模式分析为这些脑区中反映环境层次组织的表征提供了额外的证据。这些结果表明,人们通过将嵌套空间划分为子空间并使用主动认知过程来整合子空间,从而形成嵌套空间的认知地图。类似的机制可能更广泛地用于支持记忆中的层次编码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc71/11838598/c0fb9ac0ab1d/nihpp-2025.02.05.636580v1-f0001.jpg

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