Nagy Balázs Vince, Barboni Mirella Telles Salgueiro, Martins Cristiane Maria Gomes, da Costa Marcelo Fernandes, Kremers Jan, Ventura Dora Fix
Neuroscience and Behavior, University of São Paulo, São Paulo, SP, Brazil,
Doc Ophthalmol. 2014 Oct;129(2):129-38. doi: 10.1007/s10633-014-9452-z. Epub 2014 Jun 27.
Electroretinographic measurement instruments allow the variation of several stimulation parameters enabling to study a wide range of retinal processes. The purpose of the present study was to measure human flicker electroretinograms (ERGs) varying temporal modulation, temporal frequency and mean luminance in the photopic and higher mesopic ranges where the change from cone to rod dominance occurs.
Fourteen healthy subjects (mean age = 31 ± 6) participated in this study. ERG recordings were performed with the RetiPort system (Roland Consult, Germany). The stimuli were ON and OFF sawtooth waves, square wave and sine wave. The temporal frequencies were 4 and 8 Hz. The mean luminance varied from 1 to 60 cd/m(2).
The results confirmed the possibility to distinguish between rod- and cone-dominated retinal responses when using the flicker ERG at different temporal frequencies and luminances. We have also evaluated the responses at luminance levels at which the transition between rod- and cone-dominated responses occurs. This transition between rod- and cone-dominated flicker ERG responses is indicated by a significant change in the response characteristics between 4 and 8 cd/m(2) (between 200 and 400 phot Td).
The findings on the transition between rod- and cone-dominated ERGs along with the demonstration of ERG responses to different temporal flicker modulations might be informative for the electrophysiologists when setting up the stimulus at mesopic and photopic luminance levels.
视网膜电图测量仪器可改变多个刺激参数,从而能够研究广泛的视网膜生理过程。本研究的目的是测量人类闪光视网膜电图(ERG),在明视觉和较高的中间视觉范围内改变时间调制、时间频率和平均亮度,此范围内会发生从视锥细胞主导到视杆细胞主导的转变。
14名健康受试者(平均年龄 = 31 ± 6岁)参与了本研究。使用RetiPort系统(德国罗兰咨询公司)进行ERG记录。刺激为开和关锯齿波、方波和正弦波。时间频率为4Hz和8Hz。平均亮度从1到60cd/m²变化。
结果证实,在不同时间频率和亮度下使用闪光ERG时,有可能区分视杆细胞主导和视锥细胞主导的视网膜反应。我们还评估了视杆细胞主导反应和视锥细胞主导反应之间发生转变时的亮度水平下的反应。视杆细胞主导和视锥细胞主导的闪光ERG反应之间的这种转变表现为在4至8cd/m²(200至400 phot Td之间)反应特征的显著变化。
视杆细胞主导和视锥细胞主导的ERG之间转变的研究结果,以及ERG对不同时间闪光调制的反应证明,可能会为电生理学家在中间视觉和明视觉亮度水平设置刺激时提供信息。