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常峰电位在高电导状态下:抑制作用的关键作用。

Regular spiking in high-conductance states: The essential role of inhibition.

机构信息

Institute of Physiology of the Czech Academy of Sciences, 14220 Prague, Czech Republic; Charles University, First Medical Faculty, 12108 Prague, Czech Republic; and Institute of Ecology and Environmental Sciences, INRAE, 78026 Versailles, France.

Institute of Physiology of the Czech Academy of Sciences, 14220 Prague, Czech Republic.

出版信息

Phys Rev E. 2021 Feb;103(2-1):022408. doi: 10.1103/PhysRevE.103.022408.

Abstract

Strong inhibitory input to neurons, which occurs in balanced states of neural networks, increases synaptic current fluctuations. This has led to the assumption that inhibition contributes to the high spike-firing irregularity observed in vivo. We used single compartment neuronal models with time-correlated (due to synaptic filtering) and state-dependent (due to reversal potentials) input to demonstrate that inhibitory input acts to decrease membrane potential fluctuations, a result that cannot be achieved with simplified neural input models. To clarify the effects on spike-firing regularity, we used models with different spike-firing adaptation mechanisms, and we observed that the addition of inhibition increased firing regularity in models with dynamic firing thresholds and decreased firing regularity if spike-firing adaptation was implemented through ionic currents or not at all. This fluctuation-stabilization mechanism provides an alternative perspective on the importance of strong inhibitory inputs observed in balanced states of neural networks, and it highlights the key roles of biologically plausible inputs and specific adaptation mechanisms in neuronal modeling.

摘要

神经元的强抑制输入发生在神经网络的平衡状态中,会增加突触电流波动。这导致了这样的假设,即抑制有助于解释在体内观察到的高尖峰放电不规则性。我们使用具有时间相关(由于突触滤波)和状态相关(由于反转电位)输入的单室神经元模型来证明抑制输入可减小膜电位波动,而简化的神经输入模型无法实现此结果。为了阐明对尖峰放电规则性的影响,我们使用了具有不同尖峰放电适应机制的模型,并且观察到在具有动态放电阈值的模型中添加抑制会增加放电规则性,而在通过离子电流实现放电适应的情况下则会降低放电规则性,或者根本不降低放电规则性。这种波动稳定机制为在神经网络的平衡状态中观察到的强抑制输入的重要性提供了另一种观点,它突出了生物上合理的输入和特定适应机制在神经元建模中的关键作用。

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