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前额叶-丘脑底核通路支持空间工作记忆任务中的动作选择。

Prefrontal - subthalamic pathway supports action selection in a spatial working memory task.

机构信息

Institute of Clinical Neuroscience and Medical Psychology, Medical Faculty, Heinrich-Heine-University Düsseldorf, Düsseldorf, Germany.

Department of Functional and Systems Neurobiology, Instituto Cajal, CSIC, Madrid, Spain.

出版信息

Sci Rep. 2020 Jun 26;10(1):10497. doi: 10.1038/s41598-020-67185-1.

Abstract

Subthalamic nucleus (STN) is the main source of feed-forward excitation in the basal ganglia and a main target of therapeutic deep brain stimulation in movement disorders. Alleviation of motor symptoms during STN stimulation can be accompanied by deterioration of abilities to quickly choose between conflicting alternatives. Cortical afferents to the subthalamic region (ST), comprising STN and zona incerta (ZI), include projections from the medial prefrontal cortex (mPFC), yet little is known about prefrontal-subthalamic coordination and its relevance for decision-making. Here we combined electrophysiological recordings with optogenetic manipulations of projections from mPFC to ST in mice as they performed a spatial working memory task (T-maze) or explored an elevated plus maze (anxiety test). We found that gamma oscillations (30-70 Hz) are coordinated between mPFC and ST at theta (5-10 Hz) and, less efficiently, at sub-theta (2-5 Hz) frequencies. An optogenetic detuning of the theta/gamma cross-frequency coupling between the regions into sub-theta range impaired performance in the T-maze, yet did not affect anxiety-related behaviors in the elevated plus maze. Both detuning and inhibition of the mPFC-ST pathway led to repeated incorrect choices in the T-maze. These effects were not associated with changes of anxiety and motor activity measures. Our findings suggest that action selection in a cognitively demanding task crucially involves theta rhythmic coordination of gamma oscillatory signaling in the prefrontal-subthalamic pathway.

摘要

底丘脑核(STN)是基底神经节中前馈兴奋的主要来源,也是运动障碍中深部脑刺激治疗的主要靶点。STN 刺激时运动症状的缓解可能伴随着在冲突选择之间快速做出选择的能力恶化。投射到丘脑底核区(ST)的皮质传入,包括 STN 和未定带(ZI),包括来自内侧前额叶皮层(mPFC)的投射,然而,关于前额叶-丘脑底核的协调及其与决策的关系知之甚少。在这里,我们结合电生理记录和 mPFC 投射到 ST 的光遗传学操作,在小鼠执行空间工作记忆任务(T 迷宫)或探索高架十字迷宫(焦虑测试)时,研究了它们之间的联系。我们发现,γ 振荡(30-70 Hz)在 mPFC 和 ST 之间在θ(5-10 Hz)和次θ(2-5 Hz)频率下协调。区域之间的θ/γ交叉频率耦合的光遗传学失谐进入次θ范围会损害 T 迷宫中的表现,但不会影响高架十字迷宫中的焦虑相关行为。失谐和抑制 mPFC-ST 通路都会导致 T 迷宫中重复出现错误选择。这些影响与焦虑和运动活动测量的变化无关。我们的研究结果表明,在认知要求高的任务中进行动作选择,关键涉及到前额叶-丘脑底核通路中γ 振荡信号的θ节律协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd8c/7320162/e525e39d01e6/41598_2020_67185_Fig1_HTML.jpg

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