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一个用于目标导向空间导航的前额叶-丘脑-海马回路。

A prefrontal-thalamo-hippocampal circuit for goal-directed spatial navigation.

机构信息

Kavli Institute for Systems Neuroscience and Centre for Neural Computation, Norwegian University of Science and Technology, Olav Kyrres gate 9, MTFS, 7491 Trondheim, Norway.

出版信息

Nature. 2015 Jun 4;522(7554):50-5. doi: 10.1038/nature14396. Epub 2015 May 27.

Abstract

Spatial navigation requires information about the relationship between current and future positions. The activity of hippocampal neurons appears to reflect such a relationship, representing not only instantaneous position but also the path towards a goal location. However, how the hippocampus obtains information about goal direction is poorly understood. Here we report a prefrontal-thalamic neural circuit that is required for hippocampal representation of routes or trajectories through the environment. Trajectory-dependent firing was observed in medial prefrontal cortex, the nucleus reuniens of the thalamus, and the CA1 region of the hippocampus in rats. Lesioning or optogenetic silencing of the nucleus reuniens substantially reduced trajectory-dependent CA1 firing. Trajectory-dependent activity was almost absent in CA3, which does not receive nucleus reuniens input. The data suggest that projections from medial prefrontal cortex, via the nucleus reuniens, are crucial for representation of the future path during goal-directed behaviour and point to the thalamus as a key node in networks for long-range communication between cortical regions involved in navigation.

摘要

空间导航需要关于当前和未来位置之间关系的信息。海马体神经元的活动似乎反映了这种关系,不仅代表当前位置,还代表朝向目标位置的路径。然而,海马体如何获得关于目标方向的信息还知之甚少。在这里,我们报告了一个前额叶-丘脑的神经回路,它是海马体对环境中路径或轨迹的表示所必需的。在大鼠的内侧前额叶皮层、丘脑的 reunien 核和海马体的 CA1 区观察到与轨迹相关的放电。reunien 核的损伤或光遗传学沉默大大降低了与轨迹相关的 CA1 放电。在 CA3 中几乎没有与轨迹相关的活动,CA3 不接收 reunien 核的输入。这些数据表明,来自内侧前额叶皮层的投射,通过 reunien 核,对于在目标导向行为过程中表示未来路径是至关重要的,并指出丘脑是参与导航的皮质区域之间长程通信网络的关键节点。

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