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Rapid Changes of Potassium Concentration at the Outer Surface of Exposed Single Neurons during Membrane Current Flow

机译:膜电流流动过程中暴露的单个神经元外表面钾浓度的快速变化

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摘要

K+-sensitive liquid ion-exchanger microelectrodes are shown to be capable of measuring concentration changes which occur on a millisecond time scale. However, some quaternary ammonium ions, such as tetraethylammonium and acetylcholine, are able to block electrode function when present in concentrations as low as 10-4 to 10-3 M. Changes in extracellular potassium concentration caused by spike activity or voltage clamp pulses of exposed single neurons of the snail Helix pomatia may be measured by these electrodes. Quantitative analysis shows that the total amount of excess potassium found in the vicinity of the cell a short time after a clamp pulse, is in relatively good agreement with the amount of potassium carried by the membrane current.
机译:K +敏感的液体离子交换器微电极显示能够测量在毫秒级发生的浓度变化。但是,某些季铵离子,例如四乙基铵和乙酰胆碱,当浓度低至10-4至10-3 M时,便能够阻断电极功能。暴露的尖峰活性或电压钳位脉冲引起的细胞外钾浓度变化这些电极可以测量蜗牛螺旋血球的单个神经元。定量分析表明,在钳位脉冲后短时间内在细胞附近发现的过量钾的总量与膜电流携带的钾的量相对较好。

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  • 作者

    Neher, E.; Lux, H. D.;

  • 作者单位
  • 年度 1973
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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