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低阈值放电中间神经元在外侧杏仁核中执行反馈抑制。

Low-threshold spiking interneurons perform feedback inhibition in the lateral amygdala.

机构信息

Department of Psychology, Comparative Cognition Laboratory, TED University, Ziya Gokalp Caddesi No. 48 06420, Kolej Cankaya, Ankara, Turkey.

Disorders of Neural Circuit Function, Max Planck Florida Institute for Neuroscience, Jupiter, FL, 33458, USA.

出版信息

Brain Struct Funct. 2020 Apr;225(3):909-923. doi: 10.1007/s00429-020-02051-4. Epub 2020 Mar 6.

Abstract

Amygdala plays crucial roles in emotional learning. The lateral amygdala (LA) is the input station of the amygdala, where learning related plasticity occurs. The LA is cortical like in nature in terms of its cellular make up, composed of a majority of principal cells and a minority of interneurons with distinct subtypes defined by morphology, intrinsic electrophysiological properties and neurochemical expression profile. The specific functions served by LA interneuron subtypes remain elusive. This study aimed to elucidate the interneuron subtype mediating feedback inhibition. Electrophysiological evidence involving antidromic activation of recurrent LA circuitry via basolateral amygdala stimulation and paired recordings implicate low-threshold spiking interneurons in feedback inhibition. Recordings in somatostatin-cre animals crossed with tdtomato mice have revealed remarkable similarities between a subset of SOM+ interneurons and LTS interneurons. This study concludes that LTS interneurons, most of which are putatively SOM+, mediate feedback inhibition in the LA. Parallels with cortical areas and potential implications for information processing and plasticity are discussed.

摘要

杏仁核在情感学习中起着至关重要的作用。外侧杏仁核(LA)是杏仁核的输入站,学习相关的可塑性发生在那里。就其细胞组成而言,LA 在性质上类似于皮质,由大多数主细胞和少数具有不同形态、内在电生理特性和神经化学表达谱的中间神经元组成。LA 中间神经元亚型所起的具体作用仍不清楚。本研究旨在阐明介导反馈抑制的中间神经元亚型。涉及通过基底外侧杏仁核刺激和成对记录逆行激活 LA 回路的电生理证据表明,低阈值放电中间神经元在反馈抑制中起作用。在与 tdtomato 小鼠交叉的 somatostatin-cre 动物中的记录表明,SOM+中间神经元和 LTS 中间神经元之间存在显著相似性。本研究得出结论,LTS 中间神经元(其中大多数是假定的 SOM+)介导 LA 中的反馈抑制。讨论了与皮质区域的平行关系及其对信息处理和可塑性的潜在影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d91/7166205/a615234beb99/429_2020_2051_Fig1_HTML.jpg

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