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Past and Future of Analog-Digital Modulation of Synaptic Transmission

机译:突触传递的模数调制的过去和未来

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摘要

Action potentials (APs) are generally produced in response to complex summation of excitatory and inhibitory synaptic inputs. While it is usually considered as a digital event, both the amplitude and width of the AP are significantly impacted by the context of its emission. In particular, the analog variations in subthreshold membrane potential determine the spike waveform and subsequently affect synaptic strength, leading to the so-called analog-digital modulation of synaptic transmission. We review here the numerous evidence suggesting context-dependent modulation of spike waveform, the discovery analog-digital modulation of synaptic transmission in invertebrates and its recent validation in mammals. We discuss the potential roles of analog-digital transmission in the physiology of neural networks.
机译:动作电位(AP)通常是对兴奋性和抑制性突触输入的复杂求和产生的。虽然通常将其视为数字事件,但AP的振幅和宽度都受其发射的环境影响很大。特别地,亚阈值膜电位的模拟变化确定了尖峰波形并随后影响突触强度,从而导致所谓的突触传递的模拟-数字调制。我们在这里复习大量证据,这些证据表明尖峰波形的上下文相关调制,无脊椎动物突触传递的发现模拟-数字调制及其在哺乳动物中的最新验证。我们讨论了模拟数字传输在神经网络生理中的潜在作用。

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