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High-Precision Fast-Spiking Basket Cell Discharges during Complex Events in the Human Neocortex

机译:人体新皮层复杂事件中的高精度快速放电篮细胞放电

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摘要

In the human neocortex, solitary action potentials in some layer 2–3 pyramidal cells (PCs) trigger brief episodes of network activity known as complex events through strong excitatory synapses that specifically innervate GABAergic interneurons. Yet, how these “master PCs” configure the local network activity is not well understood. We report that single spikes in the PCs, studied here in synaptically connected cell pairs in frontal or temporal neocortical areas of both males and females, elicit firing of fast-spiking basket cells (FSBCs) with a short delay (on average 2.7 ms). The FSBC discharge is triggered by 13 mV (on average) monosynaptic EPSPs, and the action potential is time locked to the master PC spike with high temporal precision, showing little jitter in delay. In the complex events, the FSBC discharge occurs in the beginning of the activity episode, forming the first wave of the complex event activity. Firing of FSBCs generates GABAergic IPSCs with fast kinetics in layer 2–3 PCs, and similar IPSCs regularly occur time locked to master PC spikes in the beginning of the complex events with high probability and short (median 4.1 ms) delay with little jitter. In comparison, discharge of nonfast spiking interneurons (non-FSINs) investigated here appears inconsistently in the complex events and shows low probability. Thus, firing of layer 2–3 FSBCs with high temporal fidelity characterizes early phase of the complex events in the human neocortex.
机译:在人类新大脑皮层中,某些第2至3层锥体细胞(PC)的孤立动作电位通过专门刺激GABA能中神经元的强兴奋性突触来触发网络活动的短暂发作,称为复杂事件。然而,这些“主控PC”如何配置本地网络活动还没有很好地理解。我们报告说,在男性和女性的额叶或颞叶新皮层区域中,在突触连接的细胞对中研究了PC中的单个尖峰,可引起短时延(平均2.7 ms)的快速加料篮细胞(FSBC)的发射。 FSBC放电由平均13 mV的单突触EPSP触发,并且动作电位以较高的时间精度被时间锁定在主PC尖峰上,几乎没有延迟抖动。在复杂事件中,FSBC放电发生在活动事件开始时,形成了复杂事件活动的第一波。 FSBC的发射会在第2层到第3层PC中产生具有快速动力学的GABA能IPSC,并且在复杂事件开始时,类似的IPSC通常会锁定时间以掌握PC峰值,并且概率很高,延迟短(中值4.1 ms),抖动很小。相比之下,此处研究的非快速尖峰中间神经元(non-FSIN)的放电在复杂事件中显得不一致,并且概率较低。因此,具有高时间保真度的第2至3层FSBC的发射表征了人类新皮层中复杂事件的早期阶段。

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