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New Theoretical Model of Nerve Conduction in Unmyelinated Nerves

机译:未封闭神经中神经传导的新理论模型

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Nerve conduction in unmyelinated fibers has long been described based on the equivalent circuit model and cable theory. However, without the change in ionic concentration gradient across the membrane, there would be no generation or propagation of the action potential. Based on this concept, we employ a new conductive model focusing on the distribution of voltage-gated sodium ion channels and Coulomb force between electrolytes. Based on this new model, the propagation of the nerve conduction was suggested to take place far before the generation of action potential at each channel. We theoretically showed that propagation of action potential, which is enabled by the increasing Coulomb force produced by inflowing sodium ions, from one sodium ion channel to the next sodium channel would be inversely proportionate to the density of sodium channels on the axon membrane. Because the longitudinal number of sodium ion channel would be proportionate to the square root of channel density, the conduction velocity of unmyelinated nerves is theoretically shown to be proportionate to the square root of channel density. Also, from a viewpoint of equilibrium state of channel importation and degeneration, channel density was suggested to be proportionate to axonal diameter. Based on these simple basis, conduction velocity in unmyelinated nerves was theoretically shown to be proportionate to the square root of axonal diameter. This new model would also enable us to acquire more accurate and understandable vision on the phenomena in unmyelinated nerves in addition to the conventional electric circuit model and cable theory.
机译:没有基于等效电路模型和电缆理论描述未填充纤维中的神经传导。然而,在膜上没有离子浓度梯度的变化,没有产生或传播动作电位。基于这一概念,我们采用了一种新的导电模型,专注于电解质电解质之间的电压门控钠离子通道和库仑力的分布。基于这种新模型,建议在每个通道处产生动作电位的发生前进的繁殖激发。理论上,我们展示了通过流入钠离子产生的增加的库仑力,从一个钠离子通道产生的钠离子通道产生的作用电位的传播将与轴突膜上的钠通道的密度成成反比。因为纵向数量的钠离子通道将与通道密度的平方根成比例,所以理论上显示未髓鞘神经的导电速度与通道密度的平方根成比例。此外,从通道进口和变性的平衡状态的观点出发,建议通道密度与轴向直径成比例。基于这些简单的基础,理论上显示了未髓鞘神经中的传导速度与轴突直径的平方根成比例。除了传统的电路模型和电缆理论之外,这种新模式还将使我们能够在未键入神经中获得更准确和可理解的愿景。

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