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穹窿上核在导航过程中调节前额叶-丘脑-海马回路中的尖峰时间协调。

Supramammillary Nucleus Modulates Spike-Time Coordination in the Prefrontal-Thalamo-Hippocampal Circuit during Navigation.

机构信息

Kavli Institute for Systems Neuroscience, Norwegian University of Science and Technology, Olav Kyrres Gate 9, MTFS, 7489 Trondheim, Norway; Max Planck Institute for Brain Research, Max von Laue Str. 4, 60438 Frankfurt am Main, Germany.

Kavli Institute for Systems Neuroscience, Norwegian University of Science and Technology, Olav Kyrres Gate 9, MTFS, 7489 Trondheim, Norway.

出版信息

Neuron. 2018 Aug 8;99(3):576-587.e5. doi: 10.1016/j.neuron.2018.07.021.

Abstract

During navigation, hippocampal spatial maps are thought to interact with action-planning systems in other regions of cortex. We here report a key role for spike-time coordination in functional coupling of the medial prefrontal cortex (mPFC) to the hippocampus through the thalamic nucleus reuniens (NR). When rats perform a T-maze alternation task, spikes of neurons in mPFC and NR exhibit enhanced coordination to the CA1 theta rhythm before the choice point on the maze. A similar coordination to CA1 theta rhythm was observed in neurons of the supramammillary nucleus (SUM). Optogenetic silencing of SUM neurons reduced the temporal coordination in the mPFC-NR-CA1 circuit. Following SUM inactivation, trajectory representations were impaired in both NR and CA1, but not in mPFC, indicating a failure in transmission of action plans from mPFC to the hippocampus. The findings identify theta-frequency spike-time coordination as a mechanism for gating of information flow in the mPFC-NR-CA1 circuit.

摘要

在导航过程中,海马体的空间图谱被认为与大脑皮层其他区域的动作规划系统相互作用。我们在这里报告了一个关键作用,即尖峰时间协调在通过丘脑核连合(NR)将内侧前额叶皮层(mPFC)与海马体功能耦合中的作用。当大鼠执行 T 型迷宫交替任务时,mPFC 和 NR 中的神经元在迷宫选择点之前表现出与 CA1 theta 节律增强的协调。在乳头体核(SUM)的神经元中也观察到类似的与 CA1 theta 节律的协调。SUM 神经元的光遗传学沉默减少了 mPFC-NR-CA1 回路中的时间协调。SUM 失活后,NR 和 CA1 中的轨迹表示受损,但 mPFC 中没有,表明从 mPFC 到海马体的动作计划传递失败。这些发现确定了 theta 频率尖峰时间协调作为 mPFC-NR-CA1 电路中信息流门控的一种机制。

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