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首页> 外文期刊>Trends in Neurosciences >Interneuron diversity series: containing the detonation--feedforward inhibition in the CA3 hippocampus.
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Interneuron diversity series: containing the detonation--feedforward inhibition in the CA3 hippocampus.

机译:Interneuron多样性系列:包含在CA3海马中的爆炸-前馈抑制。

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Feedforward inhibitory circuits are involved both in the suppression of excitability and timing of action potential generation in principal cells. In the CA3 hippocampus, a single mossy fiber from a dentate gyrus granule cell forms giant boutons with multiple release sites, which are capable of detonating CA3 principal cells. By contrast, mossy fiber terminals form a larger number of Lilliputian-sized synapses with few release sites onto local circuit interneurons, with distinct presynaptic and postsynaptic properties. This dichotomy between the two synapse types endows the circuit with exquisite control over pyramidal cell discharge. Under pathological conditions where feedforward inhibition is compromised, focal excitation is no longer contained, rendering the circuit susceptible to hyperexcitability.
机译:前馈抑制电路参与兴奋性的抑制和主细胞中动作电位产生的时间。在CA3海马中,来自齿状回颗粒细胞的单个苔藓纤维形成具有多个释放位点的巨型弹子,这些弹子能够引爆CA3主细胞。相比之下,长满苔藓的纤维末端形成大量的Lilliputian大小的突触,几乎没有释放到局部回路神经元的突触前突触后特性。两种突触类型之间的这种二分法使电路具有对锥体细胞放电的精确控制。在前馈抑制受到损害的病理条件下,不再包含聚焦激发,从而使电路易于发生超兴奋性。

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