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动眼神经网络对认知编码的多重处理会导致偶然的视线转移。

Multiplexing of cognitive encoding by oculomotor networks leads to incidental gaze shifts.

作者信息

Rosen Matthew C, Freedman David J

机构信息

Department of Neurobiology, The University of Chicago, Chicago, IL 60637.

Neuroscience Institute, The University of Chicago, Chicago, IL 60637.

出版信息

Proc Natl Acad Sci U S A. 2025 Apr 15;122(15):e2422331122. doi: 10.1073/pnas.2422331122. Epub 2025 Apr 8.

Abstract

Humans and other animals are adept at learning to perform cognitively demanding behavioral tasks. Neurophysiological recordings in nonhuman primates during such tasks find that the requisite cognitive variables are encoded strongly in core oculomotor brain regions. Here, we assembled a large dataset-11 monkeys performing an abstract visual categorization task, surveyed across more than 1,000 neural recording sessions-to reveal that this produces a robust but uninstructed behavioral "tell," observed in all subjects and experiments: small, cognitively modulated eye movements. We find that these eye movements are causally linked to activity in SC but not LIP, and that they occur following transient alignment of cognitive and saccadic population coding subspaces in SC. This behavioral signature of oculomotor engagement is absent during a similar task that does not require rule-based categorization, suggesting that abstract task behaviors recruit primate oculomotor networks more strongly than previously understood.

摘要

人类和其他动物善于学习执行认知要求较高的行为任务。在此类任务中对非人类灵长类动物进行神经生理学记录发现,必要的认知变量在核心眼球运动脑区中得到强烈编码。在这里,我们收集了一个大型数据集——11只猴子执行一项抽象视觉分类任务,涵盖了1000多个神经记录时段——以揭示这会产生一种在所有受试者和实验中都能观察到的、强大但非指令性的行为“迹象”:微小的、受认知调节的眼球运动。我们发现这些眼球运动与上丘(SC)而非外侧顶内沟(LIP)的活动存在因果联系,并且它们是在SC中认知和扫视群体编码子空间短暂对齐后发生的。在一项不需要基于规则分类的类似任务中,这种眼球运动参与的行为特征并不存在,这表明抽象任务行为比之前所理解的更强烈地调动了灵长类动物的眼球运动网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7318/12012544/ae73ba3818c2/pnas.2422331122fig01.jpg

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