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由无限制观看所调节的内侧颞叶与早期视觉皮层之间的有效连接可预测记忆检索和注视恢复。

Effective connectivity between the medial temporal lobes and early visual cortex modulated by unrestricted viewing predicts memory retrieval and gaze reinstatement.

作者信息

Ladyka-Wojcik Natalia, Liu Zhong-Xu, Ryan Jennifer D

机构信息

Rotman Research Institute, Baycrest Health Sciences, Toronto, ON, Canada.

Department of Behavioral Sciences, University of Michigan-Dearborn, Dearborn MI, United States.

出版信息

Imaging Neurosci (Camb). 2025 Sep 2;3. doi: 10.1162/IMAG.a.133. eCollection 2025.

Abstract

Memory and gaze behavior are intricately linked, guiding one another to extract information and create mental representations of our environment for subsequent retrieval. Recent findings from functional neuroimaging and computational modeling suggest that reciprocal interactions between the extended hippocampal system and visuo-oculomotor regions are functionally relevant for building these mental representations during visual exploration. Yet, evidence for the directionality of information flow during encoding within this reciprocal architecture in humans is limited. In the current study, we used dynamic causal modeling (DCM) to give a non-invasive account for the directional influences between these systems when new memories are created. Here, we provide novel evidence demonstrating how unrestricted, naturalistic visual exploration induces changes in this connectivity. Subsequent memory retrieval performance was also predicted by the pattern of connectivity modulated by unrestricted visual exploration, identifying the mechanism underlying a rich history of previous work linking increased gaze behavior during encoding to later memory. Together, these findings suggest that gaze behavior shapes the ways in which brain dynamics within and between the hippocampal system and early visual cortex unfold during encoding in humans. Importantly, these directional interactions support the building of coherent, lasting mental representations.

摘要

记忆与注视行为紧密相连,相互引导以提取信息,并为后续检索创建我们周围环境的心理表征。功能神经成像和计算建模的最新研究结果表明,在视觉探索过程中,扩展海马系统与视觉眼动区域之间的相互作用对于构建这些心理表征具有功能相关性。然而,关于人类这种相互结构在编码过程中信息流方向的证据有限。在本研究中,我们使用动态因果模型(DCM)对创建新记忆时这些系统之间的方向性影响进行无创分析。在此,我们提供了新的证据,证明无限制的自然视觉探索如何引发这种连接性的变化。后续记忆检索表现也可通过无限制视觉探索调节的连接模式进行预测,从而确定了以往大量将编码过程中增加的注视行为与后期记忆联系起来的研究背后的机制。这些发现共同表明,注视行为塑造了人类编码过程中海马系统内部以及与早期视觉皮层之间大脑动力学展开的方式。重要的是,这些方向性相互作用支持连贯、持久心理表征的构建。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/374d/12406054/cf13a02d7506/IMAG.a.133_fig1.jpg

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