Oscillatory potentials in the electroretinogram.

J. Levett, J. D. McAvinn
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引用次数: 13

Abstract

This paper presents an analog circuit model of the electroretinogram b-wave and subsequent oscillations postulated to result from the depolarization of the retinal glial cells produced by potassium. The system is described by a second-order equation which oscillates under conditions of light adaptation. With dark adaptation the oscillations undergo attenuation. Light falling on the retina ultimately liberates potassium ions and this ionic current is considered to be the system input. A first approximation is an exponentially decaying current which varies depending upon light background, flash intensity and various drug manipulations. This model is a reasonable fit to the electroretinogram over considerable light background levels and is suggested as a useful tool in the study of various pharmacological effects on retinal electrophysiology.
视网膜电图的振荡电位。
本文提出了一种视网膜电图b波及其振荡的模拟电路模型,该模型假定是由钾产生的视网膜胶质细胞去极化引起的。该系统由一个二阶方程描述,该方程在光适应条件下振荡。在暗适应下,振荡经历衰减。落在视网膜上的光最终会释放钾离子,这种离子电流被认为是系统输入。第一个近似是指数衰减电流,它随光背景、闪光强度和各种药物操作而变化。该模型可以很好地拟合相当大的光背景水平下的视网膜电图,并被认为是研究各种视网膜电生理药理作用的有用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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