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水平细胞中的反常整流。

Anomalous rectification in horizontal cells.

作者信息

Werblin F S

出版信息

J Physiol. 1975 Jan;244(3):639-57. doi: 10.1113/jphysiol.1975.sp010817.

Abstract
  1. The electrical properties of horizontal cells in the mudpuppy in light and dark were measured with a pair of micropipettes separated by about 1 mum with low coupling resistance so that no bridge circuitry was required. 2. All horizontal cells studied showed significant anomalous rectification: the current-voltage characteristic for about 60 per cent of the cells studied had a slope resistance of about 20-30 M omega at the dark potential level; the slope resistance increased by about 15% for each 10 mV depolarization and decreased by about 15% for each 10 mV hyperpolarization. The remaining 40% of the horizontal cells showed a higher input resistance at corresponding potential levels but had similar rectifying properties. 3. The increase in resistance with depolrization developed with a time course of about 1/2 sec when steady steps of outward current were passed across the membrane, but the time course for resistance decrease with hyperpolarization was much shorter for steady inward current steps. In about half the horizontal cells there was a transient decrease in resistance lasting about 100 msec immediately following the outward current steps superimposed upon the slower sustained resistance increase. 4. The normal 20-30 mV hyperpolarizing light response was associated with little or no change in input resistance. However, if the membrane potential was held at the dark potential level with extrinsic current, thereby eliminating the potential-dependent resistance change, a light-elicited resistance increase of about 10 M omega was measured. 5. The time-dependent change in membrane resistance elicited by polarizing steps of current obscured the reversal potential for the response. However, when the reversal potential was measured at short times following polarization of the membrane, before the time-dependent resistance change developed, it was estimated at between +15 and +50 m V. 6. The results suggest that the horizontal cell response is mediated by a light-elicited resistance increase at the synaptic membrane which is obscured by a potential- and time-dependent resistance decrease at another part of the membrane.
摘要
  1. 用一对微电极测量泥螈水平细胞在明、暗条件下的电学特性,微电极间距约1μm,耦合电阻低,因此无需桥式电路。2. 所有研究的水平细胞均表现出明显的反常整流:约60%的研究细胞在暗电位水平的电流-电压特性的斜率电阻约为20 - 30 MΩ;每去极化10 mV,斜率电阻增加约15%,每超极化10 mV,斜率电阻降低约15%。其余40%的水平细胞在相应电位水平表现出较高的输入电阻,但具有相似的整流特性。3. 当稳定的外向电流阶跃通过膜时,电阻随去极化增加的时间进程约为1/2秒,但对于稳定的内向电流阶跃,电阻随超极化降低的时间进程要短得多。在约一半的水平细胞中,在叠加于较慢的持续电阻增加之上的外向电流阶跃之后,立即有一个持续约100毫秒的电阻短暂降低。4. 正常的20 - 30 mV超极化光反应与输入电阻几乎没有变化相关。然而,如果用外源电流将膜电位保持在暗电位水平,从而消除电位依赖性电阻变化,则测得光诱发的电阻增加约10 MΩ。5. 由电流极化阶跃引起的膜电阻随时间的变化掩盖了反应的反转电位。然而,当在膜极化后短时间测量反转电位,即在时间依赖性电阻变化出现之前,估计其在 +15至 +50 mV之间。6. 结果表明,水平细胞反应是由突触膜处光诱发的电阻增加介导的,而膜另一部分的电位和时间依赖性电阻降低掩盖了这种增加。

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Anomalous rectification in horizontal cells.水平细胞中的反常整流。
J Physiol. 1975 Jan;244(3):639-57. doi: 10.1113/jphysiol.1975.sp010817.
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