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Bifurcation Analysis of the Hodgkin-Huxley Model Exposed to External DC Electric Field

机译:外部直流电场暴露的Hodgkin-Huxley模型的分岔分析

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Based on the modified Hodgkin-Huxley (HH) model exposed to extremely low frequency (ELF) electric field, we study Hopf and saddle-node bifurcations of the modified HH model in two dimensional parameter space of externally applied DC current and trans-membrane voltage induced by external DC electric field. The bifurcation sets are calculated by employing the generalized algebra criterion in high dimensional system. The obtained bifurcation sets partition the two dimensional parameter space in terms of the qualitatively different behaviors of the HH model. Thus the neuron''s information encodes the stimulus information, and vice versa, which is significant in neuron control. The study is of some biological significance and suggest that the aberration of dynamics in bio-systems may account for diseases caused by electric exposure.
机译:基于改进的霍奇金 - Huxley(HH)模型暴露于极低频率(ELF)电场,我们在外部施加的直流电流和跨膜电压的二维参数空间中研究了改进的HH模型的HOPF和鞍座节点分岔由外部直流电场引起的。通过在高维系统中采用广义代数标准来计算分叉组。所获得的分叉在HH模型的定性不同行为方面分配二维参数空间。因此,神经元的信息编码刺激信息,反之亦然,在神经元控制中显着。该研究具有一些生物学意义,并表明生物系统中动力学的像差可能会考虑由电曝光引起的疾病。

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