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Grid cell spatial tuning reduced following systemic muscarinic receptor blockade

机译:全身性毒蕈碱受体阻滞后网格细胞的空间调节减少

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摘要

Grid cells of the medial entorhinal cortex exhibit a periodic and stable pattern of spatial tuning that may reflect the output of a path integration system. This grid pattern has been hypothesized to serve as a spatial coordinate system for navigation and memory function. The mechanisms underlying the generation of this characteristic tuning pattern remain poorly understood. Systemic administration of the muscarinic antagonist scopolamine flattens the typically positive correlation between running speed and entorhinal theta frequency in rats. The loss of this neural correlate of velocity, an important signal for the calculation of path integration, raises the question of what influence scopolamine has on the grid cell tuning as a read out of the path integration system. To test this, the spatial tuning properties of grid cells were compared before and after systemic administration of scopolamine as rats completed laps on a circle track for food rewards. The results show that the spatial tuning of the grid cells was reduced following scopolamine administration. The tuning of head direction cells, in contrast, was not reduced by scopolamine. This is the first report to demonstrate a link between cholinergic function and grid cell tuning. This work suggests that the loss of tuning in the grid cell network may underlie the navigational disorientation observed in Alzheimer's patients and elderly individuals with reduced cholinergic tone.
机译:内侧内嗅皮层的网格细胞表现出周期性且稳定的空间调谐模式,可反映路径整合系统的输出。假设该网格图案可用作导航和存储功能的空间坐标系。这种特征调整模式的产生机理仍然知之甚少。毒蕈碱拮抗剂东pol碱的全身给药可使大鼠跑步速度和内啡肽频率之间的典型正相关变平。速度这种神经相关性的丧失,这是计算路径积分的重要信号,这引发了一个问题,即东amine碱对路径积分系统的读取对东pol碱有何影响。为了测试这一点,比较了在全身施用东pol碱之前和之后,当大鼠在圆圈轨道上圈圈以获得食物奖励时,网格细胞的空间调节特性。结果表明,东碱施用后,网格细胞的空间调节降低。相比之下,东not碱并未减少头部方向细胞的调节。这是第一个证明胆碱能功能与网格细胞调节之间存在联系的报告。这项工作表明,在网格细胞网络中失去调节可能是在阿尔茨海默氏症患者和胆碱能降低的老年患者中观察到的导航障碍。

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