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光遗传刺激 VTA 调节听觉皮层颗粒下层丘脑皮层输入的频率特异性增益。

Optogenetic stimulation of the VTA modulates a frequency-specific gain of thalamocortical inputs in infragranular layers of the auditory cortex.

机构信息

Department of Systems Physiology of Learning, Leibniz Institute for Neurobiology, 39118, Magdeburg, Germany.

Center for Behavioral Brain Sciences (CBBS), 39106, Magdeburg, Germany.

出版信息

Sci Rep. 2019 Dec 31;9(1):20385. doi: 10.1038/s41598-019-56926-6.

Abstract

Reward associations during auditory learning induce cortical plasticity in the primary auditory cortex. A prominent source of such influence is the ventral tegmental area (VTA), which conveys a dopaminergic teaching signal to the primary auditory cortex. Yet, it is unknown, how the VTA influences cortical frequency processing and spectral integration. Therefore, we investigated the temporal effects of direct optogenetic stimulation of the VTA onto spectral integration in the auditory cortex on a synaptic circuit level by current-source-density analysis in anesthetized Mongolian gerbils. While auditory lemniscal input predominantly terminates in the granular input layers III/IV, we found that VTA-mediated modulation of spectral processing is relayed by a different circuit, namely enhanced thalamic inputs to the infragranular layers Vb/VIa. Activation of this circuit yields a frequency-specific gain amplification of local sensory input and enhances corticocortical information transfer, especially in supragranular layers I/II. This effects persisted over more than 30 minutes after VTA stimulation. Altogether, we demonstrate that the VTA exhibits a long-lasting influence on sensory cortical processing via infragranular layers transcending the signaling of a mere reward-prediction error. We thereby demonstrate a cellular and circuit substrate for the influence of reinforcement-evaluating brain systems on sensory processing in the auditory cortex.

摘要

听觉学习过程中的奖励关联会诱导初级听觉皮层的皮质可塑性。这种影响的一个主要来源是腹侧被盖区(VTA),它向初级听觉皮层传递多巴胺能的教学信号。然而,目前尚不清楚 VTA 如何影响皮质的频率处理和频谱整合。因此,我们通过麻醉蒙古沙鼠的电流密度分析,在突触回路水平上研究了 VTA 对听觉皮层频谱整合的直接光遗传刺激对频谱整合的时间影响。虽然听觉传入的主要终末位于颗粒输入层 III/IV,但我们发现 VTA 介导的频谱处理调制是通过不同的回路进行的,即增强了丘脑对颗粒下层 Vb/VIa 的输入。该回路的激活产生了局部感觉输入的频率特异性增益放大,并增强了皮质间信息传递,特别是在颗粒上层 I/II。这种效应在 VTA 刺激后持续了 30 多分钟。总的来说,我们证明 VTA 通过颗粒下层对感觉皮层处理产生持久影响,超越了单纯奖励预测误差的信号传递。因此,我们证明了强化评估脑系统对听觉皮层感觉处理影响的细胞和电路基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0054/6938496/372ceff2bef8/41598_2019_56926_Fig1_HTML.jpg

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