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首页> 外文期刊>The Journal of Experimental Biology >Computer simulations of high-pass filtering in zebrafish larval muscle fibres
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Computer simulations of high-pass filtering in zebrafish larval muscle fibres

机译:斑马鱼幼虫肌纤维高通滤波的计算机模拟

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摘要

Larval somatic muscle of the zebrafish, Danio rerio, like that of some other organisms, responds to a sustained depolarization with one, and only one, action potential. Here, we report computer simulations, using the NEURON simulation programme, of sodium and potassium currents of somatic muscle of larval Danio rerio to investigate their possible contribution to once-only firing. Our computer model incorporated simulated sodium and potassium ion channels based on steady-state and kinetic parameters derived from a recent electrophysiological study. The model responded to sustained depolarizations with a single action potential at all levels of depolarization above threshold. By varying several parameters of the sodium and potassium currents systematically, the minimum changes necessary to produce repetitive firing were found to be a positive shift in the half-inactivation and a negative shift in the half-activation potentials for the sodium current, accompanied by a slowing of the rate of inactivation to half of the experimentally observed values. This suggests that once-only spiking can be attributed to the steady-state values of activation and inactivation of the sodium current, along with a slower rate of inactivation. Mapping of the resultant firing properties against steady-state and kinetic ion channel parameters revealed a high safety factor for once-only firing and showed that the time constant of inactivation of the sodium current was the key determinant of once-only or repetitive firing. The rapidly inactivating potassium current does not influence once-only firing or the maximum rate of firing in response to periodic excitation in these simulations. Although a contribution of other currents to produce once-only firing has not been excluded, this model suggests that the properties of the sodium current are sufficient to account for once-only firing.
机译:与其他一些生物一样,斑马鱼斑马鱼的幼虫体细胞肌肉对持续的去极化反应也只有一个动作电位。在这里,我们报告使用NEURON模拟程序对幼体Danio rerio体细胞的钠和钾电流进行计算机模拟,以研究它们对仅一次发射的可能贡献。我们的计算机模型根据最近的电生理研究得出的稳态和动力学参数,结合了模拟的钠和钾离子通道。该模型以高于阈值的所有去极化水平以单个动作电位响应持续去极化。通过系统地改变钠和钾电流的几个参数,发现产生重复发射所需的最小变化是钠电流的半灭活有正向变化,半激活电位的有负向变化,伴随着将失活速率减慢到实验观察值的一半。这表明一次加标可以归因于钠电流的激活和失活的稳态值,以及失活的速度较慢。相对于稳态和动态离子通道参数的最终焙烧特性的映射揭示了仅一次焙烧的高安全系数,并表明钠电流失活的时间常数是一次或重复焙烧的关键决定因素。在这些模拟中,快速失活的钾电流不会影响一次性激发或响应周期性激发的最大激发速率。尽管没有排除其他电流产生仅一次焙烧的贡献,但是该模型表明钠电流的性质足以说明仅一次焙烧。

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