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前额叶皮层中的维度、信息和学习。

Dimensionality, information and learning in prefrontal cortex.

机构信息

Laboratory of Neuropsychology, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland, United States of America.

出版信息

PLoS Comput Biol. 2020 Apr 24;16(4):e1007514. doi: 10.1371/journal.pcbi.1007514. eCollection 2020 Apr.

Abstract

Learning leads to changes in population patterns of neural activity. In this study we wanted to examine how these changes in patterns of activity affect the dimensionality of neural responses and information about choices. We addressed these questions by carrying out high channel count recordings in dorsal-lateral prefrontal cortex (dlPFC; 768 electrodes) while monkeys performed a two-armed bandit reinforcement learning task. The high channel count recordings allowed us to study population coding while monkeys learned choices between actions or objects. We found that the dimensionality of neural population activity was higher across blocks in which animals learned the values of novel pairs of objects, than across blocks in which they learned the values of actions. The increase in dimensionality with learning in object blocks was related to less shared information across blocks, and therefore patterns of neural activity that were less similar, when compared to learning in action blocks. Furthermore, these differences emerged with learning, and were not a simple function of the choice of a visual image or action. Therefore, learning the values of novel objects increases the dimensionality of neural representations in dlPFC.

摘要

学习导致神经活动的群体模式发生变化。在这项研究中,我们想研究这些活动模式的变化如何影响神经反应的维度和关于选择的信息。我们通过在猴子执行双臂强盗强化学习任务时在背外侧前额叶皮层(dlPFC;768 个电极)进行高通道计数记录来解决这些问题。高通道计数记录使我们能够在猴子学习动作或物体之间的选择时研究群体编码。我们发现,在动物学习新的一对物体的价值的块中,神经群体活动的维度高于在它们学习动作的价值的块中。与在动作块中学习相比,对象块中学习的维度增加与块之间的信息共享减少有关,因此,与动作块中学习相比,神经活动模式的相似性降低。此外,这些差异是随着学习而出现的,而不是对视觉图像或动作的简单选择的函数。因此,学习新物体的价值增加了 dlPFC 中神经表示的维度。

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