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Output-Mode Transitions Are Controlled by Prolonged Inactivation of Sodium Channels in Pyramidal Neurons of Subiculum

机译:输出模式过渡受锥体束锥体神经元中钠通道的长期灭活控制。

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摘要

Transitions between different behavioral states, such as sleep or wakefulness, quiescence or attentiveness, occur in part through transitions from action potential bursting to single spiking. Cortical activity, for example, is determined in large part by the spike output mode from the thalamus, which is controlled by the gating of low-voltage–activated calcium channels. In the subiculum—the major output of the hippocampus—transitions occur from bursting in the delta-frequency band to single spiking in the theta-frequency band. We show here that these transitions are influenced strongly by the inactivation kinetics of voltage-gated sodium channels. Prolonged inactivation of sodium channels is responsible for an activity-dependent switch from bursting to single spiking, constituting a novel mechanism through which network dynamics are controlled by ion channel gating.
机译:不同行为状态(例如睡眠或清醒,静止或专心)之间的转换部分通过从动作电位爆发到单次尖峰的转变发生。例如,皮层活动在很大程度上取决于丘脑的峰值输出模式,该模式由低压激活的钙通道的门控来控制。在下丘脑(海马的主要输出)中,转换从三角洲频带的爆发过渡到三角洲频带的单个峰值。我们在这里表明,这些转变受到电压门控钠通道失活动力学的强烈影响。钠通道的长时间失活导致了与活动有关的从爆发到单峰的转换,这构成了一种新型机制,通过该机制,离子通道门控可以控制网络动力学。

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