Suppr超能文献

闰核与内侧杏仁核的功能连接:一条与化学信号处理相关的神经回路。

Functional connectivity of intercalated nucleus with medial amygdala: A circuit relevant for chemosignal processing.

作者信息

Biggs Lindsey M, Meredith Michael

机构信息

Program in Neuroscience and Dept. Biological Science, Florida State University, Tallahassee, FL 32306, USA.

出版信息

IBRO Neurosci Rep. 2022 Feb 2;12:170-181. doi: 10.1016/j.ibneur.2022.01.005. eCollection 2022 Jun.

Abstract

Medial amygdala processes social/reproductive chemosensory input, and its projections to preoptic and hypothalamic areas evoke appropriate behavioral and physiological responses. We and others have shown that different chemosensory signals elicit differential responses in medial amygdala subregions and in adjacent main intercalated nucleus (mICN). The largely GABAergic mICN receives no direct chemosensory input but, as we show, mICN has functional circuit connections with medial amygdala that could be responsible both for mICN chemosensitivity and for a feedforward inhibitory effect on posterior medial amygdala; which, in turn would affect chemosignal response. mICN is subject to inhibition by dopamine and is probably regulated by neuropeptides and input from frontal cortex. Thus, mICN is in position to modify chemosensory processing in medial amygdala and behavioral responses to social signals, according to internal brain state. Patch-clamp recordings from neurons in each relevant nucleus in horizontal brain-slices, with electrical stimulation in adjacent nuclei, reveal multiple functional connections between medial amygdala subregions and mICN. We highlight a triangular circuit which may underlie mICN chemosensitivity and its potential for modifying chemosensory information transmitted to basal forebrain. Anterior medial amygdala, which receives most of the chemosensory input, connects to posterior medial amygdala directly and both areas send information on to basal forebrain. Anterior medial amygdala can also modulate posterior medial amygdala indirectly via the mICN side-loop, which also provides a pathway for modulation by cortical input or, when inhibited by dopamine, could allow a more automatic response - as proposed for other amygdala circuits with similar ICN side loops.

摘要

内侧杏仁核处理社交/生殖化学感觉输入,其向视前区和下丘脑区域的投射引发适当的行为和生理反应。我们和其他人已经表明,不同的化学感觉信号在内侧杏仁核亚区域和相邻的主要插入核(mICN)中引发不同的反应。主要为GABA能的mICN不接受直接的化学感觉输入,但正如我们所展示的,mICN与内侧杏仁核有功能回路连接,这可能既负责mICN的化学敏感性,也负责对内侧杏仁核后部的前馈抑制作用;反过来,这又会影响化学信号反应。mICN受到多巴胺的抑制,可能受神经肽和额叶皮质输入的调节。因此,根据大脑内部状态,mICN能够在内侧杏仁核中改变化学感觉处理以及对社交信号的行为反应。在水平脑片中对每个相关核中的神经元进行膜片钳记录,并在相邻核中进行电刺激,揭示了内侧杏仁核亚区域和mICN之间的多种功能连接。我们强调了一个三角回路,它可能是mICN化学敏感性及其改变传递到基底前脑的化学感觉信息的潜力的基础。接受大部分化学感觉输入的内侧杏仁核前部直接连接到内侧杏仁核后部,并且这两个区域都将信息发送到基底前脑。内侧杏仁核前部还可以通过mICN侧环间接调节内侧杏仁核后部,这也为皮质输入的调节提供了一条途径,或者当受到多巴胺抑制时,可能允许更自动的反应——正如对其他具有类似ICN侧环的杏仁核回路所提出的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a3/8850325/ef77fb398c16/gr3.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验