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Brain-state- and cell-type-specific firing of hippocampal interneurons in vivo

机译:体内海马神经元的脑状态和细胞类型特异性放电

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Neural-network oscillations at distinct frequencies have been implicated in the encoding, consolidation and retrieval of information in the hippocampus. Some GABA (gamma-aminobutyric acid)-containing interneurons fire phase-locked to theta oscillations (4-8 Hz) or to sharp-wave-associated ripple oscillations (120-200 Hz), which represent different behavioural states(1-6). Interneurons also entrain pyramidal cells in vitro(7). The large diversity of interneurons(8-10) poses the question of whether they have specific roles in shaping distinct network activities in vivo. Here we report that three distinct interneuron types-basket, axo-axonic and oriens-lacunosum-moleculare cells-visualized and defined by synaptic connectivity as well as by neurochemical markers, contribute differentially to theta and ripple oscillations in anaesthetized rats. The firing patterns of individual cells of the same class are remarkably stereotyped and provide unique signatures for each class. We conclude that the diversity of interneurons, innervating distinct domains of pyramidal cells 11, emerged to coordinate the activity of pyramidal cells in a temporally distinct and brain-state-dependent manner. [References: 30]
机译:在不同频率的神经网络振荡已经牵涉到海马中信息的编码,合并和检索中。某些含有GABA(γ-氨基丁酸)的中间神经元会被锁相到theta振荡(4-8 Hz)或与锐波相关的波纹振荡(120-200 Hz),这代表了不同的行为状态(1-6) 。内部神经元还可以在体外夹带锥体细胞(7)。中间神经元的多样性(8-10)提出了一个问题,即它们在体内形成独特的网络活动中是否具有特定作用。在这里,我们报告的三个不同的中间神经元类型-篮,轴突-轴突和oriens-腔的分子细胞可视化和由突触连接以及通过神经化学标记物定义,分别对麻醉大鼠的θ和波纹振荡做出贡献。相同类别的单个单元格的发射模式被明显定型,并为每个类别提供唯一的签名。我们得出结论,神经元的多样性,支配着锥体细胞11的不同域,以时间上独特且依赖于脑状态的方式来协调锥体细胞的活动。 [参考:30]

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