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灵长类动物视网膜电图中的三种视锥细胞机制:两种具有离中心双极细胞反应,一种没有。

Three cone mechanisms in the primate electroretinogram: two with, one without off-center bipolar responses.

作者信息

Evers H U, Gouras P

出版信息

Vision Res. 1986;26(2):245-54. doi: 10.1016/0042-6989(86)90019-2.

Abstract

We have used ganzfeld stimulation, selective chromatic adaptation and computer averaging to identify three cone mechanisms in the corneal ERG of the macaque monkey. On a strong yellow background, two cone mechanisms can be distinguished. One has a peak spectral sensitivity near 460 nm with a relatively slow b-wave to light onset and a negative wave at offset. This response is transiently reduced after a yellow background is extinguished. The second has its peak near 560 nm with a quicker b-wave at onset and a positive wave (d-wave) at offset. On a strong blue background, the ERG appears univariant from 400 to 600 nm but not at longer wavelengths (640 nm). An even brighter blue background reduces the ERG to most of the spectrum but has almost no affect on the 640 nm response. Adding an additional red background greatly reduces the 640 nm response without significantly influencing the responses to the rest of the spectrum. By Granit's terminology, the cone ERG appears to be composed of an E-like ERG of short wave cones and an I-like ERG of at least two other cone mechanisms. The difference between E and I ERGs may be due to the absence or presence, respectively, of an off-center bipolar system. The intravitreal injection of 2-amino-4-phosphonobutyric acid (APB) supports this hypothesis. APB eliminates the b-wave of all three cone ERGs and the negative off-response of the S cone ERG but releases the positive off-response of the other cone ERGs.

摘要

我们运用了全视野刺激、选择性颜色适应和计算机平均技术,来识别猕猴角膜视网膜电图中的三种视锥细胞机制。在强黄色背景下,可以区分出两种视锥细胞机制。一种在460纳米附近有一个峰值光谱敏感度,对光开始的b波相对较慢,在光熄灭时有一个负波。在黄色背景熄灭后,这种反应会短暂减弱。第二种在560纳米附近有峰值,开始时b波较快,在光熄灭时有一个正波(d波)。在强蓝色背景下,视网膜电图在400至600纳米范围内表现为单变量,但在更长波长(640纳米)时并非如此。更亮的蓝色背景会降低大部分光谱的视网膜电图,但对640纳米的反应几乎没有影响。添加额外的红色背景会大大降低640纳米的反应,而对光谱其他部分的反应没有显著影响。按照格拉尼特的术语,视锥细胞视网膜电图似乎由短波视锥细胞的类似E的视网膜电图和至少其他两种视锥细胞机制的类似I的视网膜电图组成。E和I视网膜电图之间的差异可能分别是由于偏心双极系统的缺失或存在。玻璃体内注射2-氨基-4-膦酰丁酸(APB)支持了这一假设。APB消除了所有三种视锥细胞视网膜电图的b波以及S视锥细胞视网膜电图的负向熄灭反应,但释放了其他视锥细胞视网膜电图的正向熄灭反应。

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