Harrison J M, O'Connor P S, Young R S, Kincaid M, Bentley R
Invest Ophthalmol Vis Sci. 1987 Mar;28(3):492-9.
Pattern electroretinogram (PERG) results recorded in different laboratories from patients with unilateral traumatic transections of the optic nerve have led investigators to opposite conclusions about the sources of this response. There was no absolute demonstration of complete transection in any of these studies. In the present study, PERGs and flash ERGs were recorded from a patient who, 30 months earlier, had undergone surgical resection of the right optic nerve to remove a glioma. The histological section of the biopsied nerve confirmed complete optic nerve transection. Ophthalmoscopically and angiographically, the right eye was normal except for marked optic atrophy. PERGs were produced by 10 Hz reversal of high contrast checks with check widths from 13 deg 30 min to 12 min arc. Field size was 27 deg X 21 deg and space-averaged screen luminance was 110 cd/m2. Smaller checks (3 deg 23 min to 12 min) produced responses in both eyes, but the responses in the right eye were much smaller than those in the left eye. Large checks and diffuse flashes produced approximately equal responses in the two eyes. The implicit times of the PERGs produced by stimulation of the right eye with smaller checks were shorter than those of the left eye. The authors conclude that, in humans, there is a contribution to the high contrast pattern reversal ERG from cells which are not dependent upon the integrity of the ganglion cell layer. These cells and cells dependent upon ganglion cells may both contribute to the high contrast PERG in the normal human eye.
在不同实验室对单侧视神经外伤性横断患者记录的图形视网膜电图(PERG)结果,使得研究人员对于该反应的来源得出了相反的结论。在这些研究中,没有任何一项能绝对证明完全横断。在本研究中,对一名患者记录了PERG和闪光视网膜电图(flash ERG),该患者在30个月前接受了右侧视神经的手术切除以移除一个神经胶质瘤。活检神经的组织学切片证实了视神经完全横断。在检眼镜和血管造影检查中,除了明显的视神经萎缩外,右眼正常。PERG由高对比度方格以10Hz的频率反转产生,方格宽度从13度30分至12分视角。视野大小为27度×21度,空间平均屏幕亮度为110cd/m²。较小的方格(3度23分至12分)在双眼均产生反应,但右眼的反应比左眼小得多。大方格和弥散闪光在双眼产生的反应大致相等。用较小方格刺激右眼产生的PERG的隐含时间比左眼短。作者得出结论,在人类中,高对比度图形反转视网膜电图有一部分来自不依赖于神经节细胞层完整性的细胞。这些细胞以及依赖于神经节细胞的细胞可能都对正常人类眼睛中的高对比度PERG有贡献。