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Modulating medial septal cholinergic activity reduces medial entorhinal theta frequency without affecting speed or grid coding

机译:调节内侧间隔胆碱能活性可降低内侧内嗅角频率而不会影响速度或网格编码

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摘要

Medial septal inputs to the hippocampal system are crucial for aspects of temporal and spatial processing, such as theta oscillations and grid cell firing. However, the precise contributions of the medial septum’s cholinergic neurones to these functions remain unknown. Here, we recorded neuronal firing and local field potentials from the medial entorhinal cortex of freely foraging mice, while modulating the excitability of medial septal cholinergic neurones. Alteration of cholinergic activity produced a reduction in the frequency of theta oscillations, without affecting the slope of the non-linear theta frequency vs running speed relationship observed. Modifying septal cholinergic tone in this way also led mice to exhibit behaviours associated with novelty or anxiety. However, grid cell firing patterns were unaffected, concordant with an absence of change in the slopes of the theta frequency and firing rate speed signals thought to be used by grid cells.
机译:海马系统的中隔输入对时间和空间处理的各个方面至关重要,例如θ振荡和网格细胞点火。但是,内侧隔的胆碱能神经元对这些功能的确切贡献仍然未知。在这里,我们记录了自由觅食小鼠的内侧内嗅皮层的神经元放电和局部场电位,同时调节了内侧中隔胆碱能神经元的兴奋性。胆碱能活动的改变降低了θ振荡的频率,而没有影响所观察到的非线性θ频率与运行速度的关系的斜率。以这种方式改变间隔胆碱能的语气还导致小鼠表现出与新奇或焦虑相关的行为。然而,网格单元的发射模式不受影响,与θ频率和发射速率速度信号的斜率的变化没有变化有关,这些信号被网格单元使用。

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