首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Firing-rate resonance in a generalized integrate-and-fire neuron with subthreshold resonance - art. no. 051916
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Firing-rate resonance in a generalized integrate-and-fire neuron with subthreshold resonance - art. no. 051916

机译:具有亚阈值共振的广义积分与发射神经元的激发速率共振-艺术。没有。 051916

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摘要

Neurons that exhibit a peak at finite frequency in their membrane potential response to oscillatory inputs are widespread in the nervous system. However, the influence of this subthreshold resonance on spiking properties has not yet been thoroughly analyzed. To this end, generalized integrate-and-fire models are introduced that reproduce at the linear level the subthreshold behavior of any given conductance-based model. A detailed analysis is presented of the simplest resonant model of this kind that has two variables: the membrane potential and a supplementary voltage-gated resonant variable. The firing-rate modulation created by a noisy weak oscillatory drive, mimicking an in vivo environment, is computed numerically and analytically when the dynamics of the resonant variable is slow compared to that of the membrane potential. The results show that the firing-rate modulation is shaped by the subthreshold resonance. For weak noise, the firing-rate modulation has a minimum near the preferred subthreshold frequency. For higher noise, such as that prevailing in vivo, the firing-rate modulation peaks near the preferred subthreshold frequency. [References: 41]
机译:对振动输入的膜电位响应在有限频率处出现峰值的神经元广泛分布于神经系统中。但是,尚未深入分析这种亚阈值共振对尖峰特性的影响。为此,引入了通用的积分发射模型,该模型在线性级别上再现了任何给定基于电导的模型的亚阈值行为。给出了对这种最简单的谐振模型的详细分析,该模型具有两个变量:膜电位和附加电压门控谐振变量。当共振变量的动力学速度比膜电位慢时,可以通过数值和分析方式计算出模拟体内环境的嘈杂的弱振荡驱动所产生的发射速率调制。结果表明,激发速率调制受亚阈值共振影响。对于弱噪声,点火速率调制在优选的亚阈值频率附近具有最小值。对于较高的噪声,例如体内普遍存在的噪声,发射速率调制会在首选的亚阈值频率附近达到峰值。 [参考:41]

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