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What are the mechanisms for analogue and digital signalling in the brain?

机译:大脑中模拟和数字信号传递的机制是什么?

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Synaptic transmission in the brain generally depends on action potentials. However, recent studies indicate that subthreshold variation in the presynaptic membrane potential also determines spike-evoked transmission. The informational content of each presynaptic action potential is therefore greater than initially expected. The contribution of this synaptic property, which is a fast (from 0.01 to 10 s) and state-dependent modulation of functional coupling, has been largely underestimated and could have important consequences for our understanding of information processing in neural networks. We discuss here how the membrane voltage of the presynaptic terminal might modulate neurotransmitter release by mechanisms that do not involve a change in presynaptic Ca 2+ influx.
机译:大脑中的突触传递通常取决于动作电位。但是,最近的研究表明,突触前膜电位的亚阈值变化也决定了尖峰诱发的传导。因此,每个突触前动作电位的信息含量都比最初预期的要大。这种突触特性的贡献是快速(从0.01到10 s)和状态依赖的功能耦合调节,其作用被大大低估了,并且可能对我们对神经网络中信息处理的理解产生重要影响。我们在这里讨论突触前末端的膜电压如何通过不涉及突触前Ca 2+内流变化的机制来调节神经递质的释放。

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