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自由活动大鼠的视网膜电图和视觉诱发电位

The electroretinogram and visual evoked potential of freely moving rats.

作者信息

Szabó-Salfay O, Pálhalmi J, Szatmári E, Barabás P, Szilágyi N, Juhász G

机构信息

Research Group of Neurobiology, MTA-ELTE, Hungarian Academy of Sciences, Eötvös Lorand University, Budapest, Hungary.

出版信息

Brain Res Bull. 2001 Sep 1;56(1):7-14. doi: 10.1016/s0361-9230(01)00585-8.

Abstract

The vascularised rat retina could be one of the most useful experimental objects in visual neuroscience to understand human visual physiological and pathological processes. We report here on a new method of implantation for studying the visual system of freely moving rats that provides a rat model for simultaneous recording at corneal and cortical level and is stable enough to record for months. We implanted light emitting diodes onto the skull behind the eyeball to stimulate the eye with flashes and to light adapt the retina with constant light levels. A multistrand, stainless steel, flexible fine wire electrode placed on the eyeball was used for electroretinogram recording and screw electrodes (left/right visual and parietal cortical) were used to record the visual evoked potential and the electroencephalogram. In the present report we focus on the new method of implantation for recording the corneal flash electroretinogram of normal, freely moving rats simultaneously with the visual evoked cortical potential showing examples in various visual experiments. We also introduce a program for retinogram and visual evoked potential analysis, which defines various measures (latencies, areas, amplitudes, and durations) and draw attention to the benefits of this method for those involved in visual, functional genomic, pharmacological, and human ophthalmologic research.

摘要

血管化的大鼠视网膜可能是视觉神经科学中理解人类视觉生理和病理过程最有用的实验对象之一。我们在此报告一种用于研究自由活动大鼠视觉系统的新植入方法,该方法提供了一种可在角膜和皮层水平同时记录的大鼠模型,并且足够稳定,可以记录数月。我们将发光二极管植入眼球后方的颅骨上,用闪光刺激眼睛并用恒定光水平使视网膜适应光照。放置在眼球上的多股不锈钢柔性细线电极用于记录视网膜电图,螺钉电极(左/右视觉和顶叶皮层)用于记录视觉诱发电位和脑电图。在本报告中,我们重点介绍了一种新的植入方法,用于在各种视觉实验中同时记录正常自由活动大鼠的角膜闪光视网膜电图和视觉诱发皮层电位。我们还介绍了一个用于视网膜电图和视觉诱发电位分析的程序,该程序定义了各种测量指标(潜伏期、面积、振幅和持续时间),并提请那些从事视觉、功能基因组学、药理学和人类眼科研究的人员注意这种方法的优点。

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