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Anatomical substrates for direct interactions between hippocampus medial prefrontal cortex and the thalamic nucleus reuniens

机译:海马前额内侧皮层和丘脑核之间直接相互作用的解剖学基质

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摘要

The reuniens nucleus in the midline thalamus projects to the medial prefrontal cortex (mPFC) and the hippocampus, and has been suggested to modulate interactions between these regions, such as spindle–ripple correlations during sleep and theta band coherence during exploratory behavior. Feedback from the hippocampus to the nucleus reuniens has received less attention but has the potential to influence thalamocortical networks as a function of hippocampal activation. We used the retrograde tracer cholera toxin B conjugated to two fluorophores to study thalamic projections to the dorsal and ventral hippocampus and to the prelimbic and infralimbic subregions of mPFC. We also examined the feedback connections from the hippocampus to reuniens. The goal was to evaluate the anatomical basis for direct coordination between reuniens, mPFC, and hippocampus by looking for double-labeled cells in reuniens and hippocampus. In confirmation of previous reports, the nucleus reuniens was the origin of most thalamic afferents to the dorsal hippocampus, whereas both reuniens and the lateral dorsal nucleus projected to ventral hippocampus. Feedback from hippocampus to reuniens originated primarily in the dorsal and ventral subiculum. Thalamic cells with collaterals to mPFC and hippocampus were found in reuniens, across its anteroposterior axis, and represented, on average, about 8 % of the labeled cells in reuniens. Hippocampal cells with collaterals to mPFC and reuniens were less common (~1 % of the labeled subicular cells), and located in the molecular layer of the subiculum. The results indicate that a subset of reuniens cells can directly coordinate activity in mPFC and hippocampus. Cells with collaterals in the hippocampus–reuniens–mPFC network may be important for the systems consolidation of memory traces and for theta synchronization during exploratory behavior.
机译:中线丘脑中的reuniens核伸向内侧前额叶皮层(mPFC)和海马,并已建议调节这些区域之间的相互作用,例如睡眠时的纺锤体-波纹相关性和探索行为时的θ带相干性。从海马到里奥核的反馈受到的关注较少,但有可能根据海马激活功能影响丘脑皮质网络。我们使用了与两个荧光团结合的逆行示踪霍乱毒素B,研究丘脑向mPFC的背侧和腹侧海马区以及前缘和下缘亚区域的投射。我们还检查了从海马体到团聚体的反馈连接。目的是通过寻找uniuniens和海马中的双标记细胞来评估uniunis,mPFC和海马之间直接协调的解剖基础。在先前报道的证实中,大部分丘脑向背侧海马的传入神经起源于核仁,而核仁和外侧背核均投射至腹侧海马。从海马到团聚体的反馈主要起源于背侧和腹侧下丘脑。在小鼠中,在其前后轴上发现了带有mPFC和海马体侧支的丘脑细胞,平均占该患者中标记细胞的8%。带有mPFC和reuniens侧支的海马细胞较少见(约占标记的亚细胞的1%),位于海藻的分子层。结果表明,reuniens细胞的一个子集可以直接协调mPFC和海马中的活性。海马–reuniens–mPFC网络中带有侧支的细胞可能对记忆痕迹的系统整合和探索行为中的θ同步非常重要。

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