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Nucleus Reuniens Is Required for Encoding and Retrieving Precise Hippocampal-Dependent Contextual Fear Memories in Rats

机译:大鼠核是编码和检索大鼠精确海马依赖性上下文恐惧记忆所必需的

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摘要

The nucleus reuniens (RE) is a ventral midline thalamic nucleus that interconnects the medial prefrontal cortex (mPFC) and hippocampus (HPC). Considerable data indicate that HPC–mPFC circuits are involved in contextual and spatial memory; however, it is not clear whether the RE mediates the acquisition or retrieval of these memories. To examine this question, we inactivated the RE with muscimol before either the acquisition or retrieval of pavlovian fear conditioning in rats; freezing served as the index of fear. We found that RE inactivation before conditioning impaired the acquisition of contextual freezing, whereas inactivation of the RE before retrieval testing increased the generalization of freezing to a novel context; inactivation of the RE did not affect either the acquisition or expression of auditory fear conditioning. Interestingly, contextual conditioning impairments were absent when retrieval testing was also conducted after RE inactivation. Contextual memories acquired under RE inactivation were hippocampal independent, insofar as contextual freezing in rats conditioned under RE inactivation was insensitive to intrahippocampal infusions of the NMDA receptor antagonist aminophosphonovalerate. Together, these data reveal that the RE supports hippocampal-dependent encoding of precise contextual memories that allow discrimination of dangerous contexts from safe contexts. When the RE is inactive, however, alternate neural systems acquire an impoverished contextual memory that is expressed only when the RE is off-line.>SIGNIFICANCE STATEMENT The midline thalamic nucleus reuniens (RE) coordinates communication between the hippocampus and medial prefrontal cortex, brain areas that are critical for contextual and spatial memory. Here we show that temporary pharmacological inactivation of RE impairs the acquisition and precision of contextual fear memories after pavlovian fear conditioning in rats. However, inactivating the RE before retrieval testing restored contextual memory in rats conditioned after RE inactivation. Critically, we show that imprecise contextual memories acquired under RE inactivation are learned independently of the hippocampus. These data reveal that the RE is required for hippocampal-dependent encoding of precise contextual memories to support the discrimination of safe and dangerous contexts.
机译:reuniens(RE)核是腹中线丘脑核,将内侧前额叶皮层(mPFC)和海马(HPC)相互连接。大量数据表明,HPC–mPFC电路参与了上下文和空间存储。然而,不清楚RE是否介导这些存储器的获取或检索。为了研究这个问题,我们先用麝香酚将RE灭活,然后再获得或恢复大鼠的帕夫洛夫式恐惧条件。冻结是恐惧的指数。我们发现,条件调节之前的RE失活会损害上下文冻结的获取,而检索测试之前RE的失活将冻结的泛化推广到一个新的上下文。 RE的失活不会影响听觉恐惧条件的获得或表达。有趣的是,RE失活后也进行了检索测试时,没有上下文条件障碍。在RE失活条件下获得的背景记忆是海马独立的,因为在RE失活条件下的大鼠的背景冻结对NMDA受体拮抗剂氨膦酸戊二酸酯的海马内输注不敏感。这些数据加在一起,表明RE支持精确的情境记忆的海马依赖性编码,从而可以区分危险情境和安全情境。但是,当RE处于非活动状态时,备用神经系统会获得贫困的情境记忆,仅在RE离线时才会表达。>意义声明中线丘脑核仁(RE)协调海马之间的交流。内侧前额叶皮层,即对上下文和空间记忆至关重要的大脑区域。在这里我们表明,RE的暂时性药理失活会损害大鼠的帕夫洛夫式恐惧调节后的上下文恐惧记忆的获得和准确性。但是,在检索测试前将RE灭活可恢复RE灭活后的大鼠的情境记忆。至关重要的是,我们表明在RE失活下获得的不精确的上下文记忆是独立于海马学习的。这些数据表明,RE是进行精确的背景记忆的海马依赖性编码所必需的,以支持对安全和危险环境的区分。

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