Sustar Maja, Cvenkel Barbara, Brecelj Jelka
Unit for Visual Electrophysiology, Eye Clinic, University Medical Centre Ljubljana, Grabloviceva 46, 1000, Ljubljana, Slovenia.
Doc Ophthalmol. 2009 Jun;118(3):167-77. doi: 10.1007/s10633-008-9150-9. Epub 2008 Oct 19.
The aim was to investigate the effects of monochromatic and broadband stimuli on the amplitude of the photopic negative response (PhNR) and to compare the sensitivities of these stimuli for the detection of ganglion cell damage in glaucoma patients. Forty-one healthy subjects were studied, along with 16 patients with open-angle glaucoma. Photopic electroretinograms (ERGs) were elicited with monochromatic red, amber, green, and broadband white stimuli of progressively brighter intensities in a blue background. Pattern ERGs were also recorded using a 0.8 degrees checkerboard pattern on a 21.6 degrees x 27.8 degrees screen. In the photopic ERGs of the control subjects, the PhNR amplitude was significantly higher (P < 0.01) to red than to monochromatic amber, green, and broadband white stimuli of the same intensity. In glaucoma patients, the percentage of amplitude reduction was greater for the PhNR to red (68%, P < 0.001) than to the broadband stimulus (38%, P = 0.001). The PhNR to red monochromatic stimulus appeared to be a more sensitive parameter, with a larger area enclosed by the receiver-operating characteristic curve (0.97) than for the PhNR to broadband stimulus (0.76). Also, the PhNR to red stimulus showed a more significant correlation with the pattern ERG and the visual field defects (P < 0.05) than the PhNR elicited with broadband stimulus. These findings suggest that ganglion cell activity can be more efficiently evaluated with the PhNR elicited with a red than with a broadband stimulus. The PhNR thus appears to be a promising test for the diagnostics of the ganglion cell dysfunction.
本研究旨在探讨单色和宽带刺激对明视负反应(PhNR)振幅的影响,并比较这些刺激对青光眼患者神经节细胞损伤检测的敏感性。研究了41名健康受试者以及16名开角型青光眼患者。在蓝色背景下,用强度逐渐增加的单色红色、琥珀色、绿色和宽带白色刺激诱发明视视网膜电图(ERG)。还使用21.6度×27.8度屏幕上的0.8度棋盘格模式记录图形ERG。在对照组受试者的明视ERG中,相同强度下,红色刺激诱发的PhNR振幅显著高于单色琥珀色、绿色和宽带白色刺激(P<0.01)。在青光眼患者中,红色刺激诱发的PhNR振幅降低百分比(68%,P<0.001)大于宽带刺激诱发的PhNR(38%,P = 0.001)。红色单色刺激诱发的PhNR似乎是一个更敏感的参数,其受试者操作特征曲线所围面积(0.97)大于宽带刺激诱发的PhNR(0.76)。此外,红色刺激诱发的PhNR与图形ERG和视野缺损的相关性(P<0.05)比宽带刺激诱发的PhNR更显著。这些发现表明,与宽带刺激相比,红色刺激诱发的PhNR能更有效地评估神经节细胞活性。因此,PhNR似乎是一种很有前景的神经节细胞功能障碍诊断检测方法。