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青蛙有髓神经膜中的不对称位移电流:早期时间进程及膜电位的影响

Asymmetrical displacement currents in the membrane of frog myelinated nerve: early time course and effects of membrane potential.

作者信息

Nonner W, Rojas E, Stämpfli R

出版信息

Pflugers Arch. 1978 Jun 21;375(1):75-85. doi: 10.1007/BF00584151.

Abstract
  1. Asymmetrical displacement currents were studied in myelinated nerve fibres from Rana esculenta with a voltage clamp technique. 2. For brief pulses symmetrical with respect to a holding potential of--97mV, the asymmetry current flowing during pulses (on-response) exhibited a rising phase to a peak followed by an approximately exponential decline. After the pulses the rising phase in the off-response could not be resolved; the time constant varied about 2-fold with either size or duration of the pulse. 3. For longer pulses a second slower component could be detected both in on- and off-responses. 4. The rapidly declining on- and off-responses associated with brief pulses carried about the same charges Qon and Qoff. Increasing the duration of the pulse reduced Qoff. For all pulses tested Qoff approached about one fifth of Qmax. The reduction of Qoff was roughly characterised by time constants ranging between 1.5 and 0.5 ms for potentials between--25 and + 23 mV. Analysis of individual membrane currents confirmed that the capacity current after depolarizing pulses decreased with pulse length. 5. The effects of membrane potential on asymmetry current were studied by varying the level from which pulses were applied during 46.9ms prepulses in the range from--97 to--29mV. The fast and slow components of asymmetry current were affected differently. For potentials more positive than--90mV the fast on-response was reduced and reversed its sign at a potential 25mV more negative than the potential estimated from the steady-state charge distribution measured from--97mV.
摘要
  1. 采用电压钳技术研究了食用蛙有髓神经纤维中的不对称位移电流。2. 对于相对于-97mV的保持电位对称的短暂脉冲,脉冲期间流动的不对称电流(开启响应)呈现出一个上升阶段至峰值,随后近似指数下降。脉冲后,关闭响应中的上升阶段无法分辨;时间常数随脉冲大小或持续时间变化约2倍。3. 对于较长的脉冲,在开启和关闭响应中都能检测到第二个较慢的成分。4. 与短暂脉冲相关的快速下降的开启和关闭响应携带的电荷量Qon和Qoff大致相同。增加脉冲持续时间会降低Qoff。对于所有测试脉冲,Qoff接近Qmax的约五分之一。对于-25mV至+23mV之间的电位,Qoff的降低大致由1.5至0.5ms的时间常数表征。对单个膜电流的分析证实,去极化脉冲后的电容电流随脉冲长度而降低。5. 通过在46.9ms预脉冲期间改变施加脉冲的电位水平,研究了膜电位对不对称电流的影响,预脉冲电位范围为-97mV至-29mV。不对称电流的快速和慢速成分受到不同影响。对于比-90mV更正的电位,快速开启响应降低,并在比从-97mV测量的稳态电荷分布估计的电位负25mV的电位处反转其符号。

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