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Continuous Registration of Membrane Input Resistances of Small Plant Cells Using a Double-Pulse Current Clamp Technique for Single-Electrode Impalements 12: Comparison with the Conventional Two-Electrode Method

机译:使用双脉冲电流钳技术对单电极穿刺连续记录小植物细胞的膜输入电阻12:与常规两电极方法的比较

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摘要

To measure the cell input resistance in Elodea leaf cells, a new single-microelectrode method was explored by comparing the results with conventional two-microelectrode experiments. The new method takes advantage of the difference in the frequency response curves between electrode and cell impedances. By application of electrical stimuli, which contain specific frequency bands, the different impedances can be analyzed separately. To get a distinct separation in the frequency response of cell and electrode, respectively, the electrode capacitance has to be compensated during the impalement. Different time constants of the cell membrane can be accounted for by adjustment of the stimulus length. It is shown that both the single- and the double-electrode method yield the same results, even if the cell input resistances change considerably during the course of the experiment. This demonstrates the usefulness of the new single-electrode method for continuous measurements of cell membrane resistances, especially in cells so small that the double-electrode method is no longer applicable.
机译:为了测量伊乐藻叶片细胞的细胞输入电阻,通过将结果与常规的两微电极实验进行比较,探索了一种新的单微电极方法。新方法利用了电极和电池阻抗之间频率响应曲线的差异。通过应用包含特定频段的电刺激,可以分别分析不同的阻抗。为了分别区分电池和电极的频率响应,在刺穿过程中必须补偿电极电容。可以通过调节刺激长度来解释细胞膜的不同时间常数。结果表明,即使在实验过程中电池输入电阻发生很大变化,单电极和双电极方法也能产生相同的结果。这证明了新的单电极方法可用于连续测量细胞膜电阻,特别是在小到无法使用双电极方法的细胞中。

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