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Gain control by concerted changes in I-A and I-H conductances

机译:通过I-A和I-H电导的一致变化获得控制

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Stability of intrinsic electrical activity and modulation of input-output gain are both important for neuronal information processing. It is therefore of interest to define biologically plausible parameters that allow these two features to coexist. Recent experiments indicate that in some biological neurons, the stability of spontaneous firing can arise from coregulated expression of the electrophysiologically opposing I-A and I-H currents. Here, I show that such balanced changes in I-A and I-H dramatically alter the slope of the relationship between the firing rate and driving current in a Hodgkin-Huxley-type model neuron. Concerted changes in I-A and I-H can thus control neuronal gain while preserving intrinsic activity.
机译:内在电活动的稳定性和输入输出增益的调制对于神经元信息处理都很重要。因此,令人感兴趣的是定义允许两个特征共存的生物学上合理的参数。最近的实验表明,在某些生物神经元中,自发放电的稳定性可能源于电生理学上相反的I-A和I-H电流的表达。在这里,我证明了I-A和I-H的这种平衡变化极大地改变了霍奇金-赫克斯利(Hodgkin-Huxley)型模型神经元的放电率和驱动电流之间关系的斜率。因此,I-A和I-H的一致变化可以控制神经元的增益,同时保留内在活性。

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