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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Beta and gamma frequency synchronization by dendritic gabaergic synapses and gap junctions in a network of cortical interneurons.
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Beta and gamma frequency synchronization by dendritic gabaergic synapses and gap junctions in a network of cortical interneurons.

机译:β和伽马频率同步通过树突状ababergic突触和间隙连接的皮层interneurons网络中。

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摘要

Distinct interneuron populations innervate perisomatic and dendritic regions of cortical cells. Perisomatically terminating GABAergic inputs are effective in timing postsynaptic action potentials, and basket cells synchronize each other via gap junctions combined with neighboring GABAergic synapses. The function of dendritic GABAergic synapses in cortical rhythmicity, and their interaction with electrical synapses is not understood. Using multiple whole-cell recordings in layers 2-3 of rat somatosensory cortex combined with light and electron microscopic determination of sites of interaction, we studied the interactions between regular spiking nonpyramidal cells (RSNPCs). Random samples of unlabeled postsynaptic targets showed that RSNPCs placed GABAergic synapses onto dendritic spines (53 +/- 12%) and shafts (45 +/- 10%) and occasionally somata (2 +/- 4%). GABAergic interactions between RSNPCs were mediated by 4 +/- 2 axodendritic synapses and phased postsynaptic activity at beta frequency but were ineffective in phasing at gamma rhythm. Electrical interactions of RSNPCs were transmitted via two to eight gap junctions between dendritic shafts and/or spines. Elicited at beta and gamma frequencies, gap junctional potentials timed postsynaptic spikes with a phase lag, however strong electrical coupling could synchronize presynaptic and postsynaptic activity. Combined unitary GABAergic and gap junctional connections of moderate strength produced beta and gamma frequency synchronization of the coupled RSNPCs. Our results provide evidence that dendritic GABAergic and/or gap junctional mechanisms effectively transmit suprathreshold information in a population of interneurons at behaviorally relevant frequencies. A coherent network of GABAergic cells targeting the dendrites could provide a pathway for rhythmic activity spatially segregated from perisomatic mechanisms of synchronization.
机译:不同的中间神经元群体支配皮层细胞的perisomatic和树突区域。周界终止的GABA能输入在定时突触后动作电位中是有效的,并且篮细胞通过与邻近GABA能突触结合的间隙连接彼此同步。树突状GABA能突触在皮质节律中的功能,以及它们与电突触的相互作用尚不清楚。使用大鼠体感皮层2-3层中的多个全细胞记录,并结合光和电子显微镜确定相互作用部位,我们研究了常规尖峰非锥体细胞(RSNPC)之间的相互作用。未标记突触后靶标的随机样本显示,RSNPC将GABA能突触置于树突棘(53 +/- 12%)和轴(45 +/- 10%)上,偶尔在躯体上(2 +/- 4%)。 RSNPC之间的GABA能相互作用通过4 +/- 2轴突突触和β频率的分阶段突触后活性介导,但在定律γ阶段无效。 RSNPC的电相互作用是通过树突状轴和/或棘突之间的两个到八个间隙连接传递的。间隙连接电位以β和γ频率激发,使突触后尖峰具有相位滞后时间,但是强电耦合可以使突触前和突触后活动同步。中等强度的组合式单一GABA能和缺口连接产生了耦合RSNPC的β和γ频率同步。我们的结果提供了证据,表明树突状GABA能和/或间隙连接机制以行为相关的频率有效地在中间神经元群体中传递了阈上信息。靶向树突的GABA能细胞的相干网络可以为有节奏的活动提供一条途径,该活动在空间上与同步的perisomatic机制分开。

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