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The activity of thalamic nucleus reuniens is critical for memory retrieval but not essential for the early phase of off-line consolidation

机译:丘脑核仁的活动对于记忆恢复至关重要但对于离线整合的早期阶段却不是必需的

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摘要

Spatial navigation depends on the hippocampal function, but also requires bidirectional interactions between the hippocampus (HPC) and the prefrontal cortex (PFC). The cross-regional communication is typically regulated by critical nodes of a distributed brain network. The thalamic nucleus reuniens (RE) is reciprocally connected to both HPC and PFC and may coordinate the information flow within the HPC–PFC pathway. Here we examined if RE activity contributes to the spatial memory consolidation. Rats were trained to find reward following a complex trajectory on a crossword-like maze. Immediately after each of the five daily learning sessions the RE was reversibly inactivated by local injection of muscimol. The post-training RE inactivation affected neither the spatial task acquisition nor the memory retention, which was tested after a 20-d “forgetting” period. In contrast, the RE inactivation in well-trained rats prior to the maze exposure impaired the task performance without affecting locomotion or appetitive motivation. Our results support the role of the RE in memory retrieval and/or “online” processing of spatial information, but do not provide evidence for its engagement in “off-line” processing, at least within a time window immediately following learning experience.
机译:空间导航取决于海马功能,但也需要海马(HPC)和额叶前皮层(PFC)之间的双向交互作用。跨区域通信通常由分布式脑网络的关键节点来调节。丘脑核素(RE)与HPC和PFC相互连接,并可能协调HPC-PFC途径内的信息流。在这里,我们检查了RE活动是否有助于空间记忆整合。训练大鼠在填字游戏般的迷宫中遵循复杂的轨迹寻找奖励。每天进行五次学习后,立即通过局部注射麝香酚使RE可逆地失活。训练后的RE失活既不影响空间任务的获取,也不影响记忆力的保持,这在20天的“遗忘”期后进行了测试。相比之下,迷宫暴露之前训练有素的大鼠中的RE失活损害了工作表现,而不会影响运动或食欲。我们的研究结果支持RE在空间信息的内存检索和/或“在线”处理中的作用,但至少在紧随学习经历之后的一个时间窗口内,没有为RE参与“离线”处理提供证据。

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