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Evidence for a subcircuit in medial entorhinal cortex representing elapsed time during immobility

机译:在不动期间代表中间梭形皮层中的子狼圈的证据

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The medial entorhinal cortex (MEC) is known to contain spatial encoding neurons that likely contribute to encoding spatial aspects of episodic memories. However, little is known about the role MEC plays in encoding temporal aspects of episodic memories, particularly during immobility. Here using a virtual 'Door Stop' task for mice, we show that MEC contains a representation of elapsed time during immobility, with individual time-encoding neurons activated at a specific moment during the immobile interval. This representation consisted of a sequential activation of time-encoding neurons and displayed variations in progression speed that correlated with variations in mouse timing behavior. Time- and space-encoding neurons were preferentially active during immobile and locomotion periods, respectively, were anatomically clustered with respect to each other, and preferentially encoded the same variable across tasks or environments. These results suggest the existence of largely non-overlapping subcircuits in MEC encoding time during immobility or space during locomotion.
机译:已知内侧梭形皮质(MEC)含有空间编码神经元,其可能有助于编码剧集存储器的空间方面。然而,关于MEC的角色少知之甚少,所述角色在编码了集体存储器的时间方面,特别是在不动期间。在这里,使用虚拟的“门站”任务对小鼠来说,我们表明MEC在不动期间含有经过的经过时间的表示,各个时间编码神经元在固定间隔期间在特定时刻激活。该表示包括时间编码神经元的顺序激活,并显示与鼠标时序行为的变化相关的渐进速度的变化。在不动态和运动时段期间优先激活时段和空间编码神经元,分别是彼此解剖组聚集的,并且优先编码跨任务或环境的相同变量。这些结果表明,在运动期间的不动或空间期间MEC编码时间在MEC编码时间中存在很大的非重叠细分。

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