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会聚的直接和间接皮质流通过中线丘脑影响小鼠的回避决策。

Convergent direct and indirect cortical streams shape avoidance decisions in mice via the midline thalamus.

机构信息

Section on the Neural Circuits of Emotion and Motivation, National Institute of Mental Health, Bethesda, MD, USA.

Laboratory of Anesthesia and Analgesia Application Technology, Xuzhou Medical University, 221004, Xuzhou, China.

出版信息

Nat Commun. 2024 Aug 4;15(1):6598. doi: 10.1038/s41467-024-50941-6.

Abstract

Current concepts of corticothalamic organization in the mammalian brain are mainly based on sensory systems, with less focus on circuits for higher-order cognitive functions. In sensory systems, first-order thalamic relays are driven by subcortical inputs and modulated by cortical feedback, while higher-order relays receive strong excitatory cortical inputs. The applicability of these principles beyond sensory systems is uncertain. We investigated mouse prefronto-thalamic projections to the midline thalamus, revealing distinct top-down control. Unlike sensory systems, this pathway relies on indirect modulation via the thalamic reticular nucleus (TRN). Specifically, the prelimbic area, which influences emotional and motivated behaviors, impacts instrumental avoidance responses through direct and indirect projections to the paraventricular thalamus. Both pathways promote defensive states, but the indirect pathway via the TRN is essential for organizing avoidance decisions through disinhibition. Our findings highlight intra-thalamic circuit dynamics that integrate cortical cognitive signals and their role in shaping complex behaviors.

摘要

目前哺乳动物大脑的皮质丘脑组织概念主要基于感觉系统,而对用于高级认知功能的回路关注较少。在感觉系统中,一级丘脑中继由皮质下输入驱动,并受皮质反馈调制,而高级中继则接收强烈的兴奋性皮质输入。这些原则在感觉系统之外的适用性尚不确定。我们研究了小鼠前额叶-丘脑投射到中线丘脑的情况,揭示了明显的自上而下的控制。与感觉系统不同,这条通路依赖于通过丘脑网状核(TRN)的间接调制。具体来说,影响情绪和动机行为的前额叶区域通过直接和间接投射到室旁丘脑影响工具性回避反应。这两种途径都促进防御状态,但通过 TRN 的间接途径对于通过去抑制来组织回避决策是必不可少的。我们的发现强调了整合皮质认知信号的丘脑内回路动力学及其在塑造复杂行为中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8999/11297946/ecee70d00149/41467_2024_50941_Fig1_HTML.jpg

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