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Time Cells in the Hippocampus Are Neither Dependent on Medial Entorhinal Cortex Inputs nor Necessary for Spatial Working Memory

机译:海马中的时间细胞既不是依赖于内侧的Entorhinal皮质输入,也不是空间工作记忆所必需的

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摘要

A key function of the hippocampus and entorhinal cortex is to bridge events that are discontinuous in time, and it has been proposed that medial entorhinal cortex (mEC) supports memory retention by sustaining the sequential activity of hippocampal time cells. Therefore, we recorded hippocampal neuronal activity during spatial working memory and asked whether time cells depend on mEC inputs. Working memory was impaired in rats with mEC lesions, but the occurrence of time cells and of trajectory-coding cells in the stem did not differ from controls. Rather, the main effect of mEC lesions was an extensive spatial coding deficit of CA1 cells, which included inconsistency over time and reduced firing differences between positions on the maze. Therefore, mEC is critical for providing stable and distinct spatial information to hippocampus, while working memory (WM) maintenance is likely supported either by local synaptic plasticity in hippocampus or by activity patterns elsewhere in the brain.
机译:海马和Entorhinal皮质的关键功能是桥接时间不连续的事件,并且已经提出了内侧梭形皮质(MEC)通过维持海马时间细胞的连续活性来支持内存保持。因此,我们在空间工作存储器期间记录了海马神经元活动,并询问时间小区是否依赖于MEC输入。在具有MEC病变的大鼠中损害工作记忆,但干燥时间细胞和茎中的轨迹编码细胞的发生与对照不同。相反,MEC病变的主要效果是Ca1细胞的广泛空间编码缺损,其包括随时间的不一致和迷宫上位置之间的射击差异减少。因此,MEC对于向海马提供稳定和不同的空间信息至关重要,而工作存储器(WM)维持可能通过海马的局部突触可塑性或大脑中其他地方的活动模式来支持。

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