Sanderson G
Electrophysiology Unit, Eye and Vision Research Institute, Sydney, New South Wales, Australia.
Aust N Z J Ophthalmol. 1997 May;25 Suppl 1:S87-90. doi: 10.1111/j.1442-9071.1997.tb01768.x.
Multifocal flash electroretinograms (ERG) were recorded binocularly (n = 18). Areas were equal or scaled with excentricity. The latter were expected to increase the total amplitude if ganglion cell subcomponents were involved. Amplitudes were intercorrelated and the factor structure was established. Scaling had no influence on amplitudes or on factors. Reliability and sensitivity were high. The second kernel first slice from the nine hexagons across the midline showed differences near the macula but no component increasing in latency with distance from the disc. Thus, multifocal flash ERG have linear spatial summation and no ganglion cell subcomponents.
对18只动物进行双眼多焦闪光视网膜电图(ERG)记录。记录区域相等或根据偏心度进行缩放。如果涉及神经节细胞亚成分,预计后者会增加总振幅。对振幅进行相互关联并建立因子结构。缩放对振幅或因子没有影响。可靠性和敏感性较高。从中线穿过的九个六边形的第二个内核的第一个切片显示黄斑附近存在差异,但没有成分的潜伏期随离视盘距离增加。因此,多焦闪光ERG具有线性空间总和且不存在神经节细胞亚成分。