首页> 美国卫生研究院文献>The Journal of Neuroscience >Distinct Firing Patterns of Identified Basket and Dendrite-Targeting Interneurons in the Prefrontal Cortex during Hippocampal Theta and Local Spindle Oscillations
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Distinct Firing Patterns of Identified Basket and Dendrite-Targeting Interneurons in the Prefrontal Cortex during Hippocampal Theta and Local Spindle Oscillations

机译:在海马角和局部纺锤体振荡过程中前额叶皮层中确定的篮和以树突为目标的中间神经元的不同发射模式

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摘要

The medial prefrontal cortex is involved in working memory and executive control. However, the collective spatiotemporal organization of the cellular network has not been possible to explain during different brain states. We show that pyramidal cells in the prelimbic cortex fire synchronized to hippocampal theta and local spindle oscillations in anesthetized rats. To identify which types of interneurons contribute to the synchronized activity, we recorded and juxtacellularly labeled parvalbumin- and calbindin-expressing (PV+/CB+) basket cells and CB-expressing, PV-negative (CB+/PV−) dendrite-targeting interneurons during both network oscillations. All CB+/PV− dendrite-targeting cells strongly decreased their firing rate during hippocampal theta oscillations. Most PV+/CB+ basket cells fired at the peak of dorsal CA1 theta cycles, similar to prefrontal pyramidal cells. We show that pyramidal cells in the ventral hippocampus also fire around the peak of dorsal CA1 theta cycles, in contrast to previously reported dorsal hippocampal pyramidal cells. Therefore, prefrontal neurons might be driven by monosynaptic connections from the ventral hippocampus during theta oscillations. During prefrontal spindle oscillations, the majority of pyramidal cells and PV+/CB+ basket cells fired preferentially at the trough and early ascending phase, but CB+/PV− dendrite-targeting cells fired uniformly at all phases. We conclude that PV+/CB+ basket cells contribute to rhythmic responses of prefrontal pyramidal cells in relation to hippocampal and thalamic inputs and CB+/PV− dendrite-targeting cells modulate the excitability of dendrites and spines regardless of these field rhythms. Distinct classes of GABAergic interneuron in the prefrontal cortex contribute differentially to the synchronization of pyramidal cells during network oscillations.
机译:内侧前额叶皮层参与工作记忆和执行控制。但是,细胞网络的时空组织不可能在不同的大脑状态下解释。我们显示在麻醉大鼠中,前肢皮层火中的锥体细胞与海马theta和局部纺锤体振荡同步。为了确定哪种类型的中间神经元可以促进同步活动,我们在两个过程中都记录了并贴有细胞标记的小白蛋白和钙结合蛋白(PV + / CB +)篮状细胞,以及表达CB的,PV阴性(CB + / PV-)的树突状中间神经元。网络振荡。在海马theta振荡期间,所有靶向CB + / PV-树突的细胞均会大幅降低其放电速率。大多数PV + / CB +篮状细胞在背侧CA1 theta周期的峰值发射,类似于前额锥体细胞。我们显示,与先前报道的背侧海马锥体细胞相比,腹侧海马锥体细胞也在背侧CA1 theta周期的峰值附近触发。因此,前额叶神经元可能由theta振荡期间腹侧海马的单突触连接驱动。在前额轴振荡期间,大多数锥体细胞和PV + / CB +篮状细胞在谷底和早期上升阶段优先发射,但靶向CB + / PV-树突的细胞在所有阶段均均匀发射。我们得出结论,PV + / CB +篮状细胞与海马和丘脑输入有关,有助于前额锥体细胞的节律性反应,而与这些野外节律无关,靶向CB + / PV-树突的细胞调节树突和棘的兴奋性。前额叶皮层中不同类型的GABA能中间神经元在网络振荡过程中对锥体细胞的同步做出不同的贡献。

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