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多巴胺梯度控制着大尺度猴脑内分布式工作记忆的获取。

A dopamine gradient controls access to distributed working memory in the large-scale monkey cortex.

机构信息

Center for Neural Science, New York University, New York, NY 10003, USA.

Research Centre Jülich, INM-1, Jülich, Germany.

出版信息

Neuron. 2021 Nov 3;109(21):3500-3520.e13. doi: 10.1016/j.neuron.2021.08.024. Epub 2021 Sep 17.

Abstract

Dopamine is required for working memory, but how it modulates the large-scale cortex is unknown. Here, we report that dopamine receptor density per neuron, measured by autoradiography, displays a macroscopic gradient along the macaque cortical hierarchy. This gradient is incorporated in a connectome-based large-scale cortex model endowed with multiple neuron types. The model captures an inverted U-shaped dependence of working memory on dopamine and spatial patterns of persistent activity observed in over 90 experimental studies. Moreover, we show that dopamine is crucial for filtering out irrelevant stimuli by enhancing inhibition from dendrite-targeting interneurons. Our model revealed that an activity-silent memory trace can be realized by facilitation of inter-areal connections and that adjusting cortical dopamine induces a switch from this internal memory state to distributed persistent activity. Our work represents a cross-level understanding from molecules and cell types to recurrent circuit dynamics underlying a core cognitive function distributed across the primate cortex.

摘要

多巴胺对于工作记忆是必需的,但它如何调节大脑皮层的大范围活动尚不清楚。在这里,我们报告说,通过放射自显影测量的每个神经元的多巴胺受体密度,沿着猕猴皮层层次结构呈现出宏观梯度。该梯度被纳入一个基于连接组的大型皮层模型中,该模型具有多种神经元类型。该模型捕获了工作记忆与多巴胺之间的倒 U 形关系,以及在 90 多项实验研究中观察到的持久活动的空间模式。此外,我们还表明,多巴胺通过增强来自树突靶向中间神经元的抑制作用,对于过滤掉无关刺激至关重要。我们的模型表明,通过促进区域间连接可以实现活动沉默的记忆痕迹,并且调整皮质多巴胺会引起从这种内部记忆状态到分布式持久活动的转变。我们的工作代表了从分子和细胞类型到支持分布在灵长类动物皮层中的核心认知功能的递归电路动力学的跨层次理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c58/8571070/4489af1260db/nihms-1742228-f0002.jpg

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