Qian Haohua, Shah Manthan R, Alexander Kenneth R, Ripps Harris
Department of Ophthalmology and Visual Sciences, University of Illinois at Chicago, Chicago, IL 60612, USA.
Exp Eye Res. 2008 Jul;87(1):71-5. doi: 10.1016/j.exer.2008.04.011. Epub 2008 Apr 30.
The electroretinogram (ERG) provides a noninvasive, objective measure of retinal function, and is one of the most widely used diagnostic tools in the study of visual disorders. Although rodents are often used in the study of retinal disease, the properties of the flicker ERG of the rodent retina have not been fully characterized. Here, we show that the fundamental response of the rat ERG to sine-wave flicker exhibited a low-pass pattern in the frequency range from 2 to 30 Hz, whereas the second harmonic (F2) showed a more complex frequency-response relation. The F2 component represented only a small fraction of the ERG response at low temporal frequencies (below 12 Hz), but it made a substantial contribution to responses at high frequencies. The contrast-response relation was linear when tested with a low-frequency (6 Hz) stimulus, but saturated in response to a high-frequency (20 Hz) stimulus. After intravitreal injection of L-AP4, a specific blocker of the retinal ON pathway, the flicker responses elicited by either 6- or 20-Hz stimuli were greatly reduced in amplitude, whereas only a very slight enhancement was seen after the application of PDA, a drug that blocks retinal OFF-pathway activity. Based on the observed differences in the degree of nonlinearity, and contrast-response properties of the rat flicker ERG at low and high frequencies, as well as the pharmacological results, we postulate that sustained and transient ON bipolar cells generate the flicker ERG responses elicited at low and high temporal frequencies, respectively.
视网膜电图(ERG)提供了一种非侵入性的、客观的视网膜功能测量方法,是视觉障碍研究中使用最广泛的诊断工具之一。尽管啮齿动物常用于视网膜疾病研究,但啮齿动物视网膜闪烁ERG的特性尚未得到充分表征。在此,我们表明,大鼠ERG对正弦波闪烁的基本反应在2至30Hz频率范围内呈现低通模式,而二次谐波(F2)表现出更复杂的频率响应关系。F2成分在低时间频率(低于12Hz)时仅占ERG反应的一小部分,但在高频时对反应有很大贡献。用低频(6Hz)刺激测试时,对比度响应关系呈线性,但对高频(20Hz)刺激响应时饱和。玻璃体内注射视网膜ON通路的特异性阻断剂L-AP4后,6Hz或20Hz刺激引发的闪烁反应幅度大幅降低,而应用阻断视网膜OFF通路活性的药物PDA后,仅观察到非常轻微的增强。基于在低频和高频时大鼠闪烁ERG的非线性程度和对比度响应特性的观察差异以及药理学结果,我们推测持续性和瞬态性ON双极细胞分别产生在低时间频率和高时间频率引发的闪烁ERG反应。