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Neural representations of location outside the hippocampus

机译:海马外部位置的神经表示

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摘要

Place cells of the rat hippocampus are a dominant model system for understanding the role of the hippocampus in learning and memory at the level of single-unit and neural ensemble responses. A complete understanding of the information processing and computations performed by the hippocampus requires detailed knowledge about the properties of the representations that are present in hippocampal afferents and efferents in order to decipher the transformations that occur to these representations in the hippocampal circuitry. Neural recordings in behaving rats have revealed a number of brain areas that contain place-related firing properties in the parahippocampal regions and in other brain regions that are thought to interact with the hippocampus in certain behavioral tasks. Although investigators have just begun to scratch the surface in terms of understanding these properties, differences in the precise nature of the spatial firing between the hippocampus and these other regions promise to reveal important clues regarding the exact role of the hippocampus in learning and memory and the nature of its interactions with other brain systems to support adaptive behavior.
机译:大鼠海马的位置细胞是一个主要的模型系统,用于了解海马在单个单元和神经系综反应水平上在学习和记忆中的作用。要全面了解海马执行的信息处理和计算,需要对海马传入和传出中存在的表示形式的属性有详细的了解,以便解密在海马回路中这些表示形式所发生的转换。行为大鼠的神经记录显示,在某些行为任务中,海马旁区域和其他大脑区域中包含与位置相关的放电特性的许多大脑区域被认为与海马相互作用。尽管研究人员只是从了解这些特性的角度开始摸索表面,但海马体与其他区域之间的空间射击精确性质的差异有望揭示有关海马体在学习,记忆和运动中确切作用的重要线索。与其他大脑系统互动以支持适应性行为的性质。

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