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首页> 外文期刊>Frontiers in Cellular Neuroscience >Dynamic Control of Neurotransmitter Release by Presynaptic Potential
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Dynamic Control of Neurotransmitter Release by Presynaptic Potential

机译:突触前电位动态控制神经递质的释放

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Action potentials (APs) in the mammalian brain are thought to represent the smallest unit of information transmitted by neurons to their postsynaptic targets. According to this view, neuronal signaling is all-or-none or digital. Increasing evidence suggests, however, that subthreshold changes in presynaptic membrane potential before triggering the spike also determines spike-evoked release of neurotransmitter. We discuss here how analog changes in presynaptic voltage may regulate spike-evoked release of neurotransmitter through the modulation of biophysical state of voltage-gated potassium, calcium and sodium channels in the presynaptic compartment. The contribution of this regulation has been greatly underestimated and we discuss the impact for information processing in neuronal circuits.
机译:哺乳动物脑中的动作电位(AP)被认为代表了神经元传递到突触后靶标的最小信息单元。根据这种观点,神经元信号是全非或数字的。然而,越来越多的证据表明,在触发尖峰之前,突触前膜电位的亚阈值变化也决定了尖峰诱发的神经递质释放。我们在这里讨论突触前电压的模拟变化如何通过调节突触前隔室中电压门控钾,钙和钠通道的生物物理状态来调节神经传导的尖峰诱发释放。该法规的贡献被大大低估了,我们讨论了神经回路中信息处理的影响。

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