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Cable properties of a straight neurite of a leech neuron probed by a voltage-sensitive dye.

机译:电压敏感染料探测到的水ech神经元直突神经突的电缆特性。

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摘要

We measured a time-resolved map of electrical activity in a thin straight neurite (1.5 microns thick, 500 microns long) at a resolution of 8 microns and 0.4 ms. The neurite was obtained by guided outgrowth of an identified neuron of the leech on lanes of extracellular matrix protein. The electrical signals were detected by a fluorescent voltage-sensitive dye. We observed the voltage that was caused by an action potential elicited at the soma and by a Gaussian hyperpolarization induced at the soma, respectively. We compared the data with numerical solutions of the cable equation using the Hodgkin-Huxley parametrization. We could attribute the experimental results of depolarization and of hyperpolarization to the propagation of an action potential along an "active" cable and to the spread along a "passive" cable, respectively, if we assigned rather high specific resistances to the cytoplasm (RI = 250 omega.cm) and to the membrane (RM = 22 k omega.cm2). This assignment explained the slow velocity of 150 microns/ms of a pulse by active propagation and the limited range of 200 microns of a pulse by passive spread.
机译:我们在8微米和0.4毫秒的分辨率下测量了薄的直神经突(1.5微米厚,500微米长)中电活动的时间分辨图。通过在细胞外基质蛋白泳道上引导已确定的水ech神经元向外生长获得神经突。电信号由荧光压敏染料检测。我们观察到的电压分别是由在体细胞处引起的动作电位和在体细胞处引起的高斯超极化引起的。我们使用Hodgkin-Huxley参数化将数据与电缆方程的数值解进行了比较。如果我们为细胞质分配了相当高的特异性电阻,我们可以将去极化和超极化的实验结果分别归因于动作电位沿“主动”电缆的传播和归因于“被动”电缆的传播。 250Ωcm)和膜(RM = 22 kΩcm2)。这项工作解释了通过主动传播产生的150微米/毫秒脉冲的缓慢速度,以及通过被动传播产生的200微米脉冲的有限范围。

著录项

  • 作者

    Fromherz, P; Müller, C O;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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