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Coherence resonance in a noise-driven nonlinear integrate-and-fire model

机译:噪声驱动的非线性积分与发射模型中的相干共振

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The phenomenon of coherence resonance (CR) in the nonlinear integrate-and-fire neuronal models (NIF) driven by the multiplicative colored noise(the voltage-gated channel noise) and the additive white noise(the synaptic noise). By using the method of colored noise approximation and the adiabatic approximation theory, the analytic expression of the coefficient of variation(CV) and the probability distribution of the first fire is obtained. It is shown that the CV and probability distribution of the first fire is a non-montonic function of intensities of the multiplication colored noise and the additive white noise and correlation time of the multiplicative colored noise. Furthermore the spontaneous fire of neuron can occur when a appropriate noise parameter is chosen, then the phenomenon of coherence resonance can occur. This clarifies the conditions under which specific noise induced changes occur in neurons, and the conclusion is useful for study of nerve dynamics in the condition of noise.
机译:在乘积有色噪声(电压门控通道噪声)和加性白噪声(突触噪声)驱动下的非线性积分和发射神经元模型(NIF)中,相干共振(CR)现象。利用彩色噪声近似方法和绝热近似理论,获得了变异系数(CV)和一次火灾概率分布的解析表达式。结果表明,初次火灾的CV和概率分布是乘有色噪声和加性白噪声的强度与乘有色噪声的相关时间的非蒙脱函数。此外,当选择适当的噪声参数时,会发生神经元的自发放电,然后会发生相干共振现象。这澄清了在神经元中发生特定的噪声诱发变化的条件,并且该结论对于研究噪声条件下的神经动力学是有用的。

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