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首页> 外文期刊>The European Journal of Neuroscience >Does the dorsal hippocampus process navigational routes or behavioral context? A single-unit analysis.
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Does the dorsal hippocampus process navigational routes or behavioral context? A single-unit analysis.

机译:背海马区是否处理导航路径或行为背景?单个单元分析。

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摘要

In humans the hippocampus plays a role in both episodic memory and spatial navigation. Similar findings have been shown in other animals including monkeys and rats. The relationship between the processing of episodic and spatial related inputs within the hippocampus remains a puzzle. One approach to understanding how the hippocampus processes information is to examine how hippocampal cell activity corresponds to environmental experience. Hippocampal pyramidal cells can alter their spatial tuning (re-map) in response to changes in task demands. The degree to which this re-mapping is related to contextual/episodic information or to changes in spatial navigation/trajectories is unclear. The current study was designed to examine cell activity under two conditions that differed in contextual information without alterations in the goal-directed trajectories taken by the animals. Adult and aged rats were trained to do an alternation task on a fixed pathway [J. A. Oler et al. (2005)Neuroscience, 131, 1-12]. The animals ran this pathway during either 'safe' or 'unsafe' (a tone indicating a shock region) trials, with hesitation during 'unsafe' trials providing a clear behavioral measure of discrimination between these two conditions. Relatively few place cells displayed re-mapping between the two conditions. We propose that the principle source of re-mapping in the dorsal hippocampus is changes in the animal's trajectories rather than behavioral context. Possible reasons why so few cells responded to the change in context are discussed.
机译:在人类中,海马在情节性记忆和空间导航中均发挥作用。在包括猴子和大鼠在内的其他动物中也显示了类似的发现。海马中的情节性和空间相关输入的处理之间的关系仍然是一个难题。理解海马如何处理信息的一种方法是检查海马细胞活性如何与环境经历相对应。海马锥体细胞可以根据任务需求的变化更改其空间调整(重新映射)。这种重新映射与上下文/事件信息或与空间导航/轨迹的变化相关的程度尚不清楚。当前的研究旨在检查两种情况下的细胞活性,这些条件在上下文信息不同的情况下没有改变动物的目标定向轨迹。训练成年和成年大鼠在固定途径上进行轮换任务[J. A. Oler等。 (2005)神经科学,131,1-12]。在“安全”或“不安全”(表示休克区域的音调)试验中,动物都沿着这条路径运行,在“不安全”试验中犹豫不决,为区分这两种情况提供了明确的行为度量。相对较少的位置单元格在两种情况之间显示出重新映射。我们提出,在海马背侧重新映射的主要来源是动物轨迹的改变,而不是行为环境的改变。讨论了为什么如此少的单元格响应上下文变化的可能原因。

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