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Contribution of voltage-dependent ion channels to subthreshold resonance

机译:电压依赖性离子通道对亚阈值共振的贡献

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Subthreshold resonance has been observed in many excitatory/inhibitory neurons in the brain and it is suggested that such resonance phenomena play an important role in behavioral or perceptual functions in animals. Various voltage-dependent channels are thought to be involved in the generation of these resonance oscillations. For a compartmental neuron model with Ca2+-dependent K+ channel and low-threshold Ca2+ channel, conductance-based channel dynamics are linearized around equilibrium states and a neuron model can be treated as an equivalent RLC electric circuit, which indicates that the subthreshold resonance may be attributable to inductive properties of voltage-dependent channels. By computer simulation, we examine how parameters of these voltage-dependent channels, such as an equilibrium potential and the amplitude, effect to generate a subthreshold resonance.
机译:在脑中许多兴奋性/抑制性神经元中观察到亚阈下共振,并且表明这种共振现象在动物的行为或知觉功能中起重要作用。各种电压相关的通道被认为与这些共振振荡的产生有关。对于具有依赖于Ca 2 + 的K + 通道和低阈值Ca 2 + 通道的隔室神经元模型,基于电导的通道动力学是围绕平衡态线性化的神经元模型可以视为等效的RLC电路,这表明亚阈值共振可能归因于电压依赖性通道的感应特性。通过计算机仿真,我们检查了这些电压相关通道的参数(例如平衡电势和振幅)如何影响产生亚阈值共振。

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