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THE POTASSIUM A-CURRENT, LOW FIRING RATES AND REBOUND EXCITATION IN HODGKIN-HUXLEY MODELS

机译:HODGKIN-HUXLEY模型中的钾A电流,低燃烧率和回弹

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摘要

It is widely believed, following the work of Connor and Stevens (1971, J. Physiol, Lond. 214, 31-53) that the ability to fire action potentials over a wide frequency range, especially down to very low rates, is due to the transient, potassium A-current (I_A). Using a reduction of the classical Hodgkin-Huxley model, we study the effects of I_A on steady firing rate, especially in the near-threshold regime for the onset of firing. A minimum firing rate of zero corresponds to a homoclinic bifurcation of periodic solutions at a critical level of stimulating current. It requires that the membrane's steady-state current-voltage relation be N-shaped rather than monotonic. For experimentally based generic I_A parameters, the model does not fire at arbitrarily low rates, although it can for the more atypical I_A parameters given by Connor and Stevens for the crab axon. When the I_A inactivation rate is slow, we find that the transient potassium current can mediate more complex firing patterns, such as periodic bursting in some parameter regimes. The number of spikes per burst increases as g_A decreases and as inactivation rate decreases. We also study how I_A affects properties of transient voltage responses, such as threshold and firing latency for anodal break excitation. We provide mathematical explanations for several of these dynamic behaviors using bifurcation theory and averaging methods.
机译:人们普遍认为,继Connor和Stevens(1971,J. Physiol,Lond。214,31-53)的工作之后,能够在很宽的频率范围内,尤其是低速放电的情况下,具有发射动作电位的能力是由于瞬态钾电流(I_A)。使用经典的霍奇金-赫克斯利模型的简化,我们研究了I_A对稳定点火速率的影响,尤其是在接近阈值状态下点火的影响。最小激发速率为零,对应于在临界电流水平下周期性溶液的同斜分叉。它要求膜的稳态电流-电压关系为N形而不是单调。对于基于实验的通用I_A参数,该模型不能以任意低的速率触发,尽管它可以针对Connor和Stevens为蟹轴突提供的非典型I_A参数。当I_A失活速率很慢时,我们发现瞬态钾电流可以介导更复杂的点火模式,例如某些参数方案中的周期性爆发。随着g_A减小和失活率降低,每个突发的尖峰数量增加。我们还研究了I_A如何影响瞬态电压响应的属性,例如阳极断裂激励的阈值和触发延迟。我们使用分叉理论和平均方法为其中一些动力学行为提供数学解释。

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