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摄食过程中下丘脑外侧神经元群体的顺序激活及其通过γ振荡进行的组装。

Sequential Activation of Lateral Hypothalamic Neuronal Populations during Feeding and Their Assembly by Gamma Oscillations.

机构信息

Institute of Physiology and Pathophysiology, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Erlangen 91054, Germany

Institute for Systems Physiology, Faculty of Medicine, University of Cologne/University Clinic Cologne, Cologne 50931, Germany.

出版信息

J Neurosci. 2024 Oct 23;44(43):e0518242024. doi: 10.1523/JNEUROSCI.0518-24.2024.

Abstract

Neural circuits supporting innate behaviors, such as feeding, exploration, and social interaction, intermingle in the lateral hypothalamus (LH). Although previous studies have shown that individual LH neurons change their firing relative to the baseline during one or more behaviors, the firing rate dynamics of LH populations within behavioral episodes and the coordination of behavior-related LH populations remain largely unknown. Here, using unsupervised graph-based clustering of LH neurons firing rate dynamics in freely behaving male mice, we identified distinct populations of cells whose activity corresponds to feeding, specific times during feeding bouts, or other innate behaviors-social interaction and novel object exploration. Feeding-related cells fired together with a higher probability during slow and fast gamma oscillations (30-60 and 60-90 Hz) than during nonrhythmic epochs. In contrast, the cofiring of neurons signaling other behaviors than feeding was overall similar between slow gamma and nonrhythmic epochs but increased during fast gamma oscillations. These results reveal a neural organization of ethological hierarchies in the LH and point to behavior-specific motivational systems, the dysfunction of which may contribute to mental disorders.

摘要

支持先天行为(如进食、探索和社交互动)的神经回路在外侧下丘脑(LH)中交织在一起。尽管先前的研究表明,个别 LH 神经元在一种或多种行为期间相对于基线改变其放电,但在行为发作期间 LH 群体的放电率动态和行为相关 LH 群体的协调仍然很大程度上未知。在这里,我们使用自由行为的雄性小鼠的 LH 神经元放电率动态的无监督基于图的聚类,确定了与进食、进食回合中的特定时间或其他先天行为(社交互动和新物体探索)相对应的细胞的不同群体。与非节律时期相比,与进食相关的细胞在慢和快伽马振荡(30-60 和 60-90 Hz)期间一起发射的可能性更高。相比之下,除进食以外的其他行为信号的神经元的共发射在慢伽马和非节律时期之间总体上相似,但在快伽马振荡期间增加。这些结果揭示了 LH 中行为层次结构的神经组织,并指出了特定于行为的动机系统,其功能障碍可能导致精神障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5306/11502232/763de2d58046/jneuro-44-e0518242024-g001.jpg

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