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神经表征几何结构反映了猴子和循环神经网络中的行为差异。

Neural representational geometries reflect behavioral differences in monkeys and recurrent neural networks.

作者信息

Fascianelli Valeria, Battista Aldo, Stefanini Fabio, Tsujimoto Satoshi, Genovesio Aldo, Fusi Stefano

机构信息

Center for Theoretical Neuroscience, Columbia University, New York, NY, USA.

Zuckerman Mind Brain Behavior Institute, Columbia University, New York, NY, USA.

出版信息

Nat Commun. 2024 Aug 1;15(1):6479. doi: 10.1038/s41467-024-50503-w.

Abstract

Animals likely use a variety of strategies to solve laboratory tasks. Traditionally, combined analysis of behavioral and neural recording data across subjects employing different strategies may obscure important signals and give confusing results. Hence, it is essential to develop techniques that can infer strategy at the single-subject level. We analyzed an experiment in which two male monkeys performed a visually cued rule-based task. The analysis of their performance shows no indication that they used a different strategy. However, when we examined the geometry of stimulus representations in the state space of the neural activities recorded in dorsolateral prefrontal cortex, we found striking differences between the two monkeys. Our purely neural results induced us to reanalyze the behavior. The new analysis showed that the differences in representational geometry are associated with differences in the reaction times, revealing behavioral differences we were unaware of. All these analyses suggest that the monkeys are using different strategies. Finally, using recurrent neural network models trained to perform the same task, we show that these strategies correlate with the amount of training, suggesting a possible explanation for the observed neural and behavioral differences.

摘要

动物可能会使用多种策略来解决实验室任务。传统上,对采用不同策略的多个实验对象的行为和神经记录数据进行综合分析,可能会掩盖重要信号并得出令人困惑的结果。因此,开发能够在单一个体水平上推断策略的技术至关重要。我们分析了一项实验,其中两只雄性猴子执行了一项基于视觉线索的规则任务。对它们表现的分析没有表明它们使用了不同的策略。然而,当我们检查背外侧前额叶皮层记录的神经活动状态空间中刺激表征的几何形状时,我们发现两只猴子之间存在显著差异。我们纯粹基于神经的结果促使我们重新分析行为。新的分析表明,表征几何形状的差异与反应时间的差异相关,揭示了我们之前未意识到的行为差异。所有这些分析表明,猴子正在使用不同的策略。最后,使用经过训练执行相同任务的循环神经网络模型,我们表明这些策略与训练量相关,这为观察到的神经和行为差异提供了一种可能的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a806/11294567/08b842cf31a0/41467_2024_50503_Fig1_HTML.jpg

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