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首页> 外文期刊>Neuron >Theta Phase Segregation of Input-Specific Gamma Patterns in Entorhinal-Hippocampal Networks
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Theta Phase Segregation of Input-Specific Gamma Patterns in Entorhinal-Hippocampal Networks

机译:内嗅-海马网络中输入特定的伽玛模式的θ相分离

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Precisely how rhythms support neuronal communication remains obscure. We investigated interregional coordination of gamma oscillations using high-density electrophysiological recordings in the rat hippocampus and entorhinal cortex. We found that 30-80Hz gamma dominated CA1 local field potentials (LFPs) on the descending phase of CA1 theta waves during navigation, with 60-120Hz gamma at the theta peak. These signals corresponded to CA3 and entorhinal input, respectively. Above 50Hz, interregional phase-synchronization of principal cell spikes occurred mostly for LFPs in the axonal target domain. CA1 pyramidal cells were phase-locked mainly to fast gamma (>100Hz) LFP patterns restricted to CA1, which were strongest at the theta trough. While theta phase coordination of spiking across entorhinal-hippocampal regions depended on memory demands, LFP gamma patterns below 100Hz in the hippocampus were consistently layer specific and largely reflected afferent activity. Gamma synchronization as a mechanism for interregional communication thus rapidly loses efficacy at higher frequencies.
机译:准确地讲,节奏如何支持神经元的交流仍然不清楚。我们调查了大鼠海马和内嗅皮层中使用高密度电生理记录的伽马振荡的区域间协调。我们发现,在导航过程中,CA1 theta波的下降阶段以30-80Hz伽马为主的CA1局部场电势(LFP),theta峰值处为60-120Hz伽马。这些信号分别对应于CA3和内嗅输入。高于50Hz时,主要细胞峰的区域间相位同步主要发生在轴突靶区域的LFP中。 CA1锥体细胞主要锁相到仅限于CA1的快速伽马(> 100Hz)LFP模式,这在theta谷处最强。尽管跨内嗅-海马区突峰的θ相位协调取决于记忆需求,但海马体中低于100Hz的LFP伽马模式始终是层特异性的,并在很大程度上反映了传入活动。因此,伽马同步作为一种区域间通信的机制,在更高的频率下迅速失去了功效。

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