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通过迭代实现单电极电压钳制。

Single electrode voltage clamp by iteration.

作者信息

Park M R, Leber W, Klee M R

出版信息

J Neurosci Methods. 1981 Feb;3(3):271-83. doi: 10.1016/0165-0270(81)90063-7.

Abstract

A technique for providing conditions of voltage clamp which differs considerably from other voltage clamp schemes has been developed. The feedback network which determines the current which will clamp the cell to the desired voltage does not operate in real time. Instead, the system uses a form of discontinuous feedback. The event to be clamped, which must be one which can be made to repeat itself without change, is elicited and allowed to run to completion without the intervention of feedback. During each repetition of the event, a current waveform is injected whose shape is based on the foregoing trials (iterations). Successive repetitions of this process develop a current waveform which ever more closely clamps the voltage to the desired value. Implementation involves a means of converting the intracellular voltage signal to digital form (a transient recorder), a means of processing the digitalized voltage signal (a digital computer), and a means of delivering the clamping current back to the preparation. The system has two advantages over other voltage clamp techniques. First, that the feedback loop is open in real time confers great stability. This advantage is exploited in the use of iterative voltage clamp in single electrode preparations. Secondly, iterative voltage clamp is essentially unlimited in the speed with which it can respond to transients. This would make the technique of interest even in preparations such as squid giant axon, where two electrodes are used and very fast responsiveness is desired.

摘要

一种与其他电压钳制方案有很大不同的提供电压钳制条件的技术已经被开发出来。确定将细胞钳制到所需电压的电流的反馈网络并非实时运行。相反,该系统使用一种不连续反馈形式。待钳制的事件必须是一种能够无变化地重复自身的事件,该事件被引发并在没有反馈干预的情况下运行至完成。在事件的每次重复过程中,注入一个电流波形,其形状基于先前的试验(迭代)。这个过程的连续重复会产生一个电流波形,它能将电压越来越紧密地钳制到所需值。实现这一技术需要一种将细胞内电压信号转换为数字形式的手段(瞬态记录仪)、一种处理数字化电压信号的手段(数字计算机)以及一种将钳制电流反馈回标本的手段。与其他电压钳制技术相比,该系统有两个优点。第一,反馈回路实时开放赋予了极大的稳定性。这种优势在单电极标本中迭代电压钳制的应用中得到了利用。第二,迭代电压钳制对瞬态的响应速度基本上是不受限制的。即使在诸如枪乌贼巨大轴突这样使用两个电极且需要非常快速响应的标本中,该技术也会引起人们的兴趣。

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