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快速眼动和非快速眼动睡眠期间学习和推断知识的前额叶编码。

Prefrontal coding of learned and inferred knowledge during REM and NREM sleep.

机构信息

Research Centre for Idling Brain Science, University of Toyama, Toyama, 930-0194, Japan.

Department of Biochemistry, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.

出版信息

Nat Commun. 2024 Jun 24;15(1):4566. doi: 10.1038/s41467-024-48816-x.

Abstract

Idling brain activity has been proposed to facilitate inference, insight, and innovative problem-solving. However, it remains unclear how and when the idling brain can create novel ideas. Here, we show that cortical offline activity is both necessary and sufficient for building unlearned inferential knowledge from previously acquired information. In a transitive inference paradigm, male C57BL/6J mice gained the inference 1 day after, but not shortly after, complete training. Inhibiting the neuronal computations in the anterior cingulate cortex (ACC) during post-learning either non-rapid eye movement (NREM) or rapid eye movement (REM) sleep, but not wakefulness, disrupted the inference without affecting the learned knowledge. In vivo Ca imaging suggests that NREM sleep organizes the scattered learned knowledge in a complete hierarchy, while REM sleep computes the inferential information from the organized hierarchy. Furthermore, after insufficient learning, artificial activation of medial entorhinal cortex-ACC dialog during only REM sleep created inferential knowledge. Collectively, our study provides a mechanistic insight on NREM and REM coordination in weaving inferential knowledge, thus highlighting the power of idling brain in cognitive flexibility.

摘要

大脑空闲活动被认为有助于推理、顿悟和创新问题解决。然而,目前尚不清楚空闲的大脑是如何以及何时能够产生新的想法。在这里,我们表明皮质离线活动对于从先前获得的信息中构建未学习的推理知识是必要且充分的。在传递性推理范式中,雄性 C57BL/6J 小鼠在完全训练后 1 天而不是不久后获得了推理。在学习后,无论是在非快速眼动(NREM)睡眠还是快速眼动(REM)睡眠期间抑制前扣带皮层(ACC)中的神经元计算,但在清醒时不会,这会破坏推理而不影响已学习的知识。体内钙成像表明,NREM 睡眠以完整的层次组织分散的已学习知识,而 REM 睡眠则从组织好的层次结构中计算推理信息。此外,在学习不足的情况下,仅在 REM 睡眠期间人工激活内侧缰核-ACC 对话会产生推理知识。总的来说,我们的研究提供了关于 NREM 和 REM 协调在编织推理知识方面的机制见解,从而突出了空闲大脑在认知灵活性方面的力量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f50/11196720/7d2e10c9f23a/41467_2024_48816_Fig1_HTML.jpg

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