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State-Dependent Modulation of Gap Junction Signaling by the Persistent Sodium Current

机译:持久性钠电流对间隙连接信号的状态依赖性调制

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摘要

Thalamic neurons fluctuate between two states: a hyperpolarized state associated with burst firing and sleep spindles, and a depolarized state associated with tonic firing and rapid, reliable information transmission between the sensory periphery and cortex. The thalamic reticular nucleus (TRN) plays a central role in thalamocortical processing by providing feed-forward and feedback inhibition to thalamic relay cells; TRN cells participate in the generation of sleep spindles, and have been suggested to focus the neural “searchlight” of attention. The mechanisms underlying synchrony in the TRN during different behavioral states are largely unknown. TRN cells are densely interconnected by electrical synapses. Here we show that activation of the persistent sodium current (INaP) by depolarization causes up to fourfold changes in electrical synaptic efficacy between TRN neurons. We further show that amplification of electrical synaptic responses strongly enhances tonic spike synchrony but, surprisingly, does not affect burst coordination. We use a Hodgkin–Huxley model to gain insight into the differences between the effects of burstlets, spikelets, and amplification on burst and spike times.
机译:丘脑神经元在两种状态之间波动:与猝发放电和睡眠纺锤相关的超极化状态,以及与强直放电和感觉周围与皮质之间快速,可靠的信息传递相关的去极化状态。丘脑网状核(TRN)通过为丘脑中继细胞提供前馈和反馈抑制作用而在丘脑皮层加工中发挥重要作用。 TRN细胞参与睡眠纺锤体的产生,并已被建议集中于注意力的神经“探照灯”。在TRN中,不同行为状态下同步的基本机制尚不清楚。 TRN细胞通过电突触紧密地相互连接。在这里,我们显示通过去极化激活持续性钠电流(INaP)会导致TRN神经元之间的电突触功效发生多达四倍的变化。我们进一步表明,电突触反应的放大极大地增强了补品的尖峰同步性,但是,令人惊讶的是,它不影响猝发的协调。我们使用霍奇金-赫克斯利(Hodgkin-Huxley)模型来深入了解小脉冲,小脉冲和放大对脉冲和尖峰时间的影响之间的差异。

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