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Mechanisms of generation of membrane potential resonance in a neuron with multiple resonant ionic currents

机译:具有多个共振离子电流的神经元中膜电位共振的产生机制

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摘要

Neuronal membrane potential resonance (MPR) is associated with subthreshold and network oscillations. A number of voltage-gated ionic currents can contribute to the generation or amplification of MPR, but how the interaction of these currents with linear currents contributes to MPR is not well understood. We explored this in the pacemaker PD neurons of the crab pyloric network. The PD neuron MPR is sensitive to blockers of H- (IH) and calcium-currents (ICa). We used the impedance profile of the biological PD neuron, measured in voltage clamp, to constrain parameter values of a conductance-based model using a genetic algorithm and obtained many optimal parameter combinations. Unlike most cases of MPR, in these optimal models, the values of resonant- (fres) and phasonant- (f? = 0) frequencies were almost identical. Taking advantage of this fact, we linked the peak phase of ionic currents to their amplitude, in order to provide a mechanistic explanation the dependence of MPR on the ICa gating variable time constants. Additionally, we found that distinct pairwise correlations between ICa parameters contributed to the maintenance of fres and resonance power (QZ). Measurements of the PD neuron MPR at more hyperpolarized voltages resulted in a reduction of fres but no change in QZ. Constraining the optimal models using these data unmasked a positive correlation between the maximal conductances of IH and ICa. Thus, although IH is not necessary for MPR in this neuron type, it contributes indirectly by constraining the parameters of ICa.
机译:神经元膜电位共振(MPR)与亚阈值和网络振荡相关联。许多电压门控离子电流可以有助于MPR的产生或扩增,而是如何具有线性电流的这些电流的相互作用贡献对MPR并不了解。我们在螃蟹幽门网络的起搏器PD神经元中探讨了这一点。 PD Neuron MPR对H-(IH)和钙 - 电流(ICA)的阻滞剂敏感。我们使用了在电压钳位中测量的生物PD神经元的阻抗轮廓,以使用遗传算法约束基于电导的模型的参数值,并获得了许多最佳参数组合。与大多数MPR的情况不同,在这些最佳模型中,谐振 - (FRES)和相位(F≥0)频率几乎相同。利用这一事实,我们将离子电流的峰值相连到幅度,以提供机械解释MPR对ICA Gating可变时间常数的依赖性。另外,我们发现ICA参数之间的不同成对相关性有助于维护FRES和谐振功率(QZ)。在更多超极化电压下PD神经元MPR的测量导致FRES的减少,但QZ没有变化。利用这些数据约束最佳模型取消掩蔽了IH和ICA的最大电导之间的正相关。因此,尽管在这种神经元类型中对MPR不是必需的,但是它通过限制ICA的参数间接地贡献。

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