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多焦点二元核的解释。

The interpretation of multifocal binary kernels.

作者信息

Sutter E

机构信息

The Smith-Kettlewell Eye Research Institute, San Francisco, California 94115, USA.

出版信息

Doc Ophthalmol. 2000;100(2-3):49-75. doi: 10.1023/a:1002702917233.

Abstract

The interpretation of binary kernels derived by means of the mulifocal ERG has frequently been the source of confusion and controversy. The aim of this paper is to provide an intuitive understanding of the concept of kernels and to demonstrate with models and examples, the relationship between the kernels and individual responses. The sample data used to illustrate the various aspects of the technique were derived and analyzed by means of the multifocal VERIS instrument using bipolar Burian-Allen contact lens electrodes. From the kernel data, response waveforms are synthesized that can be readily compared with those obtained with conventional flash, double flash and multi-flash ERG techniques. From the kernels of a single multifocal record, waveforms are synthesized that describe responses at various times after a preceding focal flash. It is shown that the observed adaptive changes in the waveforms depend not only on the flash interval but also on retinal eccentricity. Features on the response waveform exhibit independent adaptive behavior suggesting that they originate from different retinal sources. On one hand, the examples presented here illustrate the rich information on retinal dynamics contained in the kernels. On the other hand, they demonstrate how the interpretation of multifocal data can be facilitated when the kernel series is transformed into representations with more direct physiological appeal.

摘要

通过多焦视网膜电图得出的二元核的解释常常是混淆和争议的源头。本文的目的是提供对核概念的直观理解,并通过模型和示例展示核与个体反应之间的关系。用于说明该技术各个方面的样本数据是通过使用双极Burian-Allen隐形眼镜电极的多焦VERIS仪器获得并分析的。从核数据中合成响应波形,这些波形可以很容易地与通过传统闪光、双闪光和多闪光视网膜电图技术获得的波形进行比较。从单个多焦记录的核中,合成描述在前一个局部闪光后不同时间的反应的波形。结果表明,观察到的波形自适应变化不仅取决于闪光间隔,还取决于视网膜离心率。反应波形上的特征表现出独立的自适应行为,表明它们源自不同的视网膜来源。一方面,这里给出的示例说明了核中包含的关于视网膜动力学的丰富信息。另一方面,它们展示了当将核系列转换为具有更直接生理吸引力的表示时,如何促进多焦数据的解释。

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