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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Hippocampal CA1 place cells encode intended destination on a maze with multiple choice points.
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Hippocampal CA1 place cells encode intended destination on a maze with multiple choice points.

机译:海马CA1位置细胞在具有多个选择点的迷宫中编码预期的目的地。

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摘要

The hippocampus encodes both spatial and nonspatial aspects of a rat's ongoing behavior at the single-cell level. In this study, we examined the encoding of intended destination by hippocampal (CA1) place cells during performance of a serial reversal task on a double Y-maze. On the maze, rats had to make two choices to access one of four possible goal locations, two of which contained reward. Reward locations were kept constant within blocks of 10 trials but changed between blocks, and the session of each day comprised three or more trial blocks. A disproportionate number of place fields were observed in the start box and beginning stem of the maze, relative to other locations on the maze. Forty-six percent of these place fields had different firing rates on journeys to different goal boxes. Another group of cells had place fields before the second choice point, and, of these, 44% differentiated between journeys to specific goal boxes. In a second experiment, we observed that rats with hippocampal damage made significantly more errors than control rats on the Y-maze when reward locations were reversed. Together, these results suggest that, at the start of the maze, the hippocampus encodes both current location and the intended destination of the rat, and this encoding is necessary for the flexible response to changes in reinforcement contingencies.
机译:海马在单细胞水平上编码大鼠正在进行的行为的空间和非空间方面。在这项研究中,我们检查了在双重Y型迷宫上执行一系列反向任务期间海马(CA1)放置细胞对预期目的地的编码。在迷宫中,老鼠必须做出两个选择才能进入四个可能的目标位置之一,其中两个包含奖励。奖励位置在10个试验的区块内保持不变,但在各个区块之间变化,并且每天的会话包含三个或更多的试验区块。相对于迷宫中的其他位置,在迷宫的起始框和起始茎中观察到不成比例的位置字段。这些位置字段中有46%在通往不同目标框的旅程中具有不同的射速。另一组单元格在第二选择点之前放置了位置字段,其中有44%在前往特定目标框的旅程之间有所区别。在第二个实验中,我们观察到当奖励位置相反时,海马损伤的大鼠比Y型迷宫的对照大鼠犯更多的错误。总之,这些结果表明,在迷宫开始时,海马既编码大鼠的当前位置,又编码其预期的目的地,并且这种编码对于灵活地响应增强事件的发生是必需的。

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