Feghali J G, Jin J C, Odom J V
Department of Ophthalmology, West Virginia University Health Sciences Center, Morgantown 26506.
Invest Ophthalmol Vis Sci. 1991 Jul;32(8):2184-9.
Pattern electroretinograms (PERGs), with a presumed ganglion cell origin, and oscillatory potentials (OPs), with a presumed inner retinal origin, are reduced in glaucoma. Flash ERGs are reduced at intraocular pressures (IOPs) greater than 60 mm Hg. A study was designed to investigate the time-course of change in PERGs, OPs, and flash ERGs after increasing the IOP of ten rabbit eyes to 35-45 mm Hg by using a suction-cup apparatus. Although flash ERG b-wave amplitude was unchanged (P = 0.32), PERGs were reduced (P less than 0.001) immediately after IOP elevation, as were OPs (P = 0.03). Both PERG and OP amplitudes returned to normal immediately after normal IOP was restored. This study showed that the rabbit is a suitable model for studying PERGs. It also suggested that moderate IOP elevation for 10 min reversibly impaired ganglion cell and inner retinal function in the rabbit, although more external function was unchanged.
模式视网膜电图(PERG)起源于神经节细胞,振荡电位(OP)起源于视网膜内层,在青光眼患者中均降低。当眼压(IOP)高于60 mmHg时,闪光视网膜电图降低。本研究旨在通过使用吸盘装置将10只兔眼的眼压升高至35 - 45 mmHg,研究PERG、OP和闪光视网膜电图变化的时间过程。尽管闪光视网膜电图b波振幅未改变(P = 0.32),但眼压升高后PERG立即降低(P < 0.001),OP也降低(P = 0.03)。恢复正常眼压后,PERG和OP振幅立即恢复正常。本研究表明,兔是研究PERG的合适模型。这也表明,兔眼压适度升高10分钟会可逆性损害神经节细胞和视网膜内层功能,尽管更多的外部功能未改变。