Yanase J, Ogawa H, Ohtsuka H
Safety Research Laboratories, Yamanouchi Pharmaceutical Co., Ltd., Tokyo, Japan.
J Vet Med Sci. 1995 Oct;57(5):877-81. doi: 10.1292/jvms.57.877.
In anesthetized beagle dogs, electroretinograms (ERGs) were recorded with full-field stimuli during, and after, dark adaptation. With blue stimuli, a cornea-positive b-wave appeared at 13 min in the dark, and b-wave increased in amplitude and peak latency with dark adaptation, reaching near-plateau level approximately 61 min after bleaching. This b-wave was considered to be derived from rods (scotopic b-wave) based on its spectral sensitivity function. After about 31 min, oscillatory potentials and a small cornea-negative wave preceding the b-wave appeared. With red stimuli, a small cornea-positive b-wave with a short peak latency appeared immediately after the start of dark adaptation. The amplitude and peak latency of this wave remained substantially unchanged for 16 min. It then gradually became obscure after the appearance, and increase in amplitude, of scotopic components. After 2 hr dark adaptation, ERGs elicited by blue and red stimuli showed essentially the same waveforms, and in contrast to the situation in humans and monkeys, the cone component was not easily distinguished in the waveform elicited by red stimulus. It was confirmed that the ERG elicited by red stimulus, under blue-green background light sufficient to eliminate rod components, included a cone-derived photopic b-wave. The ERGs elicited by red stimuli were not different from those elicited by blue stimuli, because the photopic b-wave had a very small amplitude relative to the scotopic b-wave and a peak latency very similar to that of the scotopic cornea-negative small wave.
在麻醉的比格犬中,于暗适应期间及之后,用全视野刺激记录视网膜电图(ERG)。对于蓝色刺激,在黑暗中13分钟时出现角膜正向b波,随着暗适应,b波的振幅和峰潜伏期增加,在漂白后约61分钟达到近平台水平。基于其光谱敏感性函数,该b波被认为源自视杆细胞(暗视b波)。大约31分钟后,出现振荡电位和b波之前的一个小角膜负向波。对于红色刺激,在暗适应开始后立即出现一个峰潜伏期短的小角膜正向b波。该波的振幅和峰潜伏期在16分钟内基本保持不变。然后在暗视成分出现并增加振幅后,它逐渐变得模糊。在2小时暗适应后,由蓝色和红色刺激诱发的ERG显示出基本相同的波形,并且与人类和猴子的情况不同,在红色刺激诱发的波形中不容易区分视锥细胞成分。已证实,在足以消除视杆细胞成分的蓝绿色背景光下,由红色刺激诱发的ERG包括一个源自视锥细胞的明视b波。由红色刺激诱发的ERG与由蓝色刺激诱发的ERG没有差异,因为明视b波相对于暗视b波的振幅非常小,且峰潜伏期与暗视角膜负向小波的非常相似。