Hood D C, Seiple W, Holopigian K, Greenstein V
Department of Psychology, Columbia University, New York, NY 10027-7004, USA.
Vis Neurosci. 1997 May-Jun;14(3):533-44. doi: 10.1017/s0952523800012190.
The multi-input technique of Sutter and Tran (1992) yields multiple focal ERGs. The purpose here was to compare the components of this multifocal ERG to the components of the standard, full-field ERG. To record multifocal ERGs, an array of 103 hexagons was displayed on a monitor. Full-field (Ganzfeld) ERGs were elicited by flashes presented upon steady background fields. The latencies of two prominent subcomponents of the full-field ERG were altered by varying the intensity of the incremental flash or the intensity of the background field. By showing that similar manipulations of the multi-input parameters produce similar changes in latency, we were able to relate the components of the multifocal ERG to the components of the full-field ERG. The biphasic responses of the multifocal ERG appear to be generated by the same cells generating the a-wave and positive peaks of the full-field cone ERG.
萨特和特兰(1992年)的多输入技术可产生多个焦点视网膜电图。本文的目的是将这种多焦点视网膜电图的成分与标准全视野视网膜电图的成分进行比较。为记录多焦点视网膜电图,在监视器上显示了由103个六边形组成的阵列。全视野(全视野刺激器)视网膜电图由稳定背景光场下的闪光诱发。通过改变增量闪光的强度或背景光场的强度,全视野视网膜电图两个主要子成分的潜伏期会发生改变。通过表明对多输入参数进行类似操作会产生类似的潜伏期变化,我们能够将多焦点视网膜电图的成分与全视野视网膜电图的成分联系起来。多焦点视网膜电图的双相反应似乎是由产生全视野视锥细胞视网膜电图a波和正峰的相同细胞产生的。