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Activation of separated Na+ and K+ channels in an excitable model cell: Using stimulating step pre-pulse waveform

机译:在可激发模型细胞中激活分离的Na +和K +通道:使用刺激阶跃预脉冲波形

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Application of constant step voltage in the presence of channel blocker and different extracellular ionic concentration results in activation or inactivation of one or both K+ and Na+ channel gates in voltage clamp condition. With recording the membrane currents, the kinetic behavior of ionic channel gates are studied. In the present research, the effect of stimulating pre-pulse voltage steps is considered to control the time course of voltage dependent Na+ and K+ channel activity. Stimulation waveform was designed in order to control the time course of gating and to separate of Na and K channel activity. Then, by applying the stimulus waveform on model and studying the step responses, characteristics and kinetic parameter values were defined. This modeling study has also presented an adequate stimulating signal to separate Na+ and K+ channel activities with maximum conductance during the stimulation period.
机译:在存在通道阻滞剂和不同的细胞外离子浓度的情况下施加恒定的步进电压会导致在电压钳位条件下激活或失活一个或两个以上的K +和Na +通道门。通过记录膜电流,研究了离子通道门的动力学行为。在本研究中,考虑了刺激预脉冲电压阶跃的效果,以控制电压依赖性Na +和K +通道活性的时间过程。设计刺激波形是为了控制选通的时间过程并分离Na和K通道活动。然后,通过将刺激波形应用于模型并研究阶跃响应,定义了特性和动力学参数值。该建模研究还提出了足够的刺激信号,以在刺激期间以最大的电导率分离Na +和K +通道活动。

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