Zhang Sheng-Jia, Ye Jing, Couey Jonathan J, Witter Menno, Moser Edvard I, Moser May-Britt
Centre for Neural Computation and Kavli Institute for Systems Neuroscience, Norwegian University of Science and Technology, , 7489 Trondheim, Norway.
Philos Trans R Soc Lond B Biol Sci. 2013 Dec 23;369(1635):20120516. doi: 10.1098/rstb.2012.0516. Print 2014 Feb 5.
The mammalian space circuit is known to contain several functionally specialized cell types, such as place cells in the hippocampus and grid cells, head-direction cells and border cells in the medial entorhinal cortex (MEC). The interaction between the entorhinal and hippocampal spatial representations is poorly understood, however. We have developed an optogenetic strategy to identify functionally defined cell types in the MEC that project directly to the hippocampus. By expressing channelrhodopsin-2 (ChR2) selectively in the hippocampus-projecting subset of entorhinal projection neurons, we were able to use light-evoked discharge as an instrument to determine whether specific entorhinal cell groups--such as grid cells, border cells and head-direction cells--have direct hippocampal projections. Photoinduced firing was observed at fixed minimal latencies in all functional cell categories, with grid cells as the most abundant hippocampus-projecting spatial cell type. We discuss how photoexcitation experiments can be used to distinguish the subset of hippocampus-projecting entorhinal neurons from neurons that are activated indirectly through the network. The functional breadth of entorhinal input implied by this analysis opens up the potential for rich dynamic interactions between place cells in the hippocampus and different functional cell types in the entorhinal cortex (EC).
已知哺乳动物的空间回路包含几种功能特化的细胞类型,比如海马体中的位置细胞以及内嗅皮质(MEC)中的网格细胞、头部方向细胞和边界细胞。然而,内嗅皮质和海马体空间表征之间的相互作用却鲜为人知。我们开发了一种光遗传学策略,以识别MEC中直接投射到海马体的功能明确的细胞类型。通过在内嗅投射神经元的海马体投射子集中选择性表达通道视紫红质-2(ChR2),我们能够利用光诱发放电作为一种手段,来确定特定的内嗅细胞群——如网格细胞、边界细胞和头部方向细胞——是否有直接的海马体投射。在所有功能细胞类别中,均在固定的最短潜伏期观察到光诱导放电,其中网格细胞是投射到海马体的最丰富的空间细胞类型。我们讨论了光激发实验如何用于区分投射到海马体的内嗅神经元子集与通过网络间接激活的神经元。该分析所暗示的内嗅输入的功能广度,为海马体中的位置细胞与内嗅皮质(EC)中不同功能细胞类型之间丰富的动态相互作用开辟了潜力。