内嗅皮质
海马体
背景(考古学)
编码(内存)
计算机科学
海马结构
神经科学
空间记忆
空间语境意识
空间分析
任务(项目管理)
上游(联网)
人工智能
心理学
生物
认知
地理
电信
古生物学
工作记忆
遥感
管理
经济
作者
John C. Bowler,Attila Losonczy
出处
期刊:Neuron
[Elsevier]
日期:2023-12-01
卷期号:111 (24): 4071-4085.e6
被引量:13
标识
DOI:10.1016/j.neuron.2023.09.013
摘要
The subregions of the entorhinal cortex (EC) are conventionally thought to compute dichotomous representations for spatial processing, with the medial EC (MEC) providing a global spatial map and the lateral EC (LEC) encoding specific sensory details of experience. Yet, little is known about the specific types of information EC transmits downstream to the hippocampus. Here, we exploit in vivo sub-cellular imaging to record from EC axons in CA1 while mice perform navigational tasks in virtual reality (VR). We uncover distinct yet overlapping representations of task, location, and context in both MEC and LEC axons. MEC transmitted highly location- and context-specific codes; LEC inputs were biased by ongoing navigational goals. However, during tasks with reliable reward locations, the animals' position could be accurately decoded from either subregion. Our results revise the prevailing dogma about EC information processing, revealing novel ways spatial and non-spatial information is routed and combined upstream of the hippocampus.
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