首页> 美国卫生研究院文献>The Journal of Neuroscience >Impaired Sequential Egocentric and Allocentric Memories in Forebrain-Specific–NMDA Receptor Knock-Out Mice during a New Task Dissociating Strategies of Navigation
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Impaired Sequential Egocentric and Allocentric Memories in Forebrain-Specific–NMDA Receptor Knock-Out Mice during a New Task Dissociating Strategies of Navigation

机译:在新的导航策略分离任务期间前脑特异性NMDA受体敲除小鼠的顺序性自我中心和同素中心记忆受损。

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摘要

The hippocampus is considered to play a role in allocentric but not in egocentric spatial learning. How does this view fit with the emerging evidence that the hippocampus and possibly related cortical areas are necessary for episodic-like memory, i.e., in all situations in which events need to be spatially or sequentially organized? Are NMDA receptor-dependent mechanisms crucial for the acquisition of spatiotemporal relationships? To address this issue, we used knock-out (KO) mice lacking hippocampal CA1 NMDA receptors and presenting a reduction of these receptors in the deep cortical layers (NR1-KO mice). A new task (the starmaze) was designed, allowing us to distinguish allocentric and sequential-egocentric memories. NR1-KO mice were impaired in acquiring both types of memory. Our findings suggest that memories composed of multiple spatiotemporal events require intact NMDA receptors-dependent mechanisms in CA1 and possibly in the deep cortical layers.
机译:海马被认为在同素中心而不是在以自我中心的空间学习中起作用。这种观点如何与新出现的证据相吻合,即海马和可能相关的皮层区域是类情节式记忆所必需的,即在所有需要空间或顺序组织事件的情况下? NMDA受体依赖性机制对获取时空关系是否至关重要?为解决此问题,我们使用了缺乏海马CA1 NMDA受体的敲除(KO)小鼠,并在皮质深层中降低了这些受体的表达(NR1-KO小鼠)。设计了一项新任务(“星光迷宫”),使我们能够区分同心心和顺序自我中心记忆。 NR1-KO小鼠的两种记忆均受损。我们的发现表明,由多个时空事件组成的记忆需要在CA1以及可能在深层皮质中完整的NMDA受体依赖性机制。

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