临床ERG、EOG及其他视网膜功能测试的微机分析。

Medical instrumentation Pub Date : 1988-02-01
G Stanziano, H Kaplan, A Koblasz, K Davey
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引用次数: 0

摘要

视网膜电图(ERG)和眼电图(EOG)是视网膜功能的两种最常用的视觉电诊断测试。ERG和EOG的测量比较容易,但由于其响应幅度较小,且相关信号隐藏在电磁和生物噪声中,因此在处理其信号数据时存在许多工程困难。这些测试往往是耗时的,所以它们适合自动控制。这篇文章描述了在埃默里大学诊所的一个基于微处理器的电生理实验室的工程设计,用于进行ERG、EOG和其他视网膜功能的临床测试。可比较的系统既能接受来自各种传感器的数据,又能灵活地允许所有计划的测试方案,这是任何商业来源都无法提供的。
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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Microcomputer analyses of clinical ERG, EOG, and other tests of retinal function.

The electroretinogram (ERG) and electro-oculogram (EOG) are two of the most frequently used visual electrodiagnostic tests of retinal function. The ERG and EOG are easily measured, but there are many engineering difficulties in processing their signal data because the response amplitudes are relatively small, and the relevant signals are buried in electromagnetic and biologic noise. These tests tend to be time consuming, so they lend themselves to automatic control. This article describes the engineering designs relative to a microprocessor-based electrophysiologic laboratory at Emory University Clinic to perform ERG, EOG, and other clinical tests of retinal function. A comparable system that offered both the ability to accept data from a variety of transducers and the flexibility to permit all of the planned testing protocols was not available from any commercial source.

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