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杏仁核投射到丘脑网状核增强了皮质的声音反应。

Projection from the Amygdala to the Thalamic Reticular Nucleus Amplifies Cortical Sound Responses.

机构信息

Department of Otorhinolaryngology: HNS, Department of Neuroscience, University of Pennsylvania, Philadelphia, PA, USA.

Department of Biological Sciences, Lehigh University, Bethlehem, PA, USA.

出版信息

Cell Rep. 2019 Jul 16;28(3):605-615.e4. doi: 10.1016/j.celrep.2019.06.050.

Abstract

Many forms of behavior require selective amplification of neuronal representations of relevant environmental signals. Emotional learning enhances sensory responses in the sensory cortex, yet the underlying circuits remain poorly understood. We identify a pathway between the basolateral amygdala (BLA), an emotional learning center in the mouse brain, and the inhibitory reticular nucleus of the thalamus (TRN). Optogenetic activation of BLA suppressed spontaneous, but not tone-evoked, activity in the auditory cortex (AC), amplifying tone-evoked responses. Viral tracing identified BLA projections terminating at TRN. Optogenetic activation of amygdala-TRN projections further amplified tone-evoked responses in the auditory thalamus and cortex. The results are explained by a computational model of the thalamocortical circuitry, in which activation of TRN by BLA primes thalamocortical neurons to relay relevant sensory input. This circuit mechanism shines a neural spotlight on behaviorally relevant signals and provides a potential target for the treatment of neuropsychological disorders.

摘要

许多形式的行为都需要选择性地放大与环境信号相关的神经元表示。情绪学习增强了感觉皮层中的感官反应,但潜在的回路仍知之甚少。我们发现了一种位于大脑杏仁核外侧核(BLA)和丘脑抑制性网状核(TRN)之间的通路。BLA 的光遗传学激活抑制了听觉皮层(AC)中的自发活动,但不抑制音调诱发的活动,从而增强了音调诱发的反应。病毒追踪确定了 BLA 投射终止于 TRN。BLA-TRN 投射的光遗传学激活进一步增强了听觉丘脑和皮层中的音调诱发反应。这些结果可以用丘脑皮层电路的计算模型来解释,其中 BLA 对 TRN 的激活使丘脑皮层神经元准备传递相关的感觉输入。这种电路机制为与行为相关的信号提供了神经焦点,并为治疗神经心理障碍提供了一个潜在的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d8/7081884/161b6558b509/nihms-1534940-f0002.jpg

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