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长时间黑暗对鲤鱼视网膜内视锥水平细胞光反应性和光谱敏感性的影响

Effects of prolonged darkness on light responsiveness and spectral sensitivity of cone horizontal cells in carp retina in vivo.

作者信息

Yang X L, Fan T X, Shen W

机构信息

Shanghai Institute of Physiology, Chinese Academy of Sciences.

出版信息

J Neurosci. 1994 Jan;14(1):326-34. doi: 10.1523/JNEUROSCI.14-01-00326.1994.

Abstract

Light responses of cone- and rod-driven horizontal cells were recorded intracellularly from opened eyes of intact, immobilized carp and the effects of prolonged darkness on these cells were examined. When the retina was left in the dark, responses of cone horizontal cells to a moderate test flash presented once every 10 min gradually and steadily decreased in size (dark suppression effect). Following a repetitive presentation of the test flash, the light responsiveness of the cells was enhanced. In contrast, the rod horizontal cells did not show the dark suppression effect and the light responsiveness of these cells increased in the dark. Effects of prolonged darkness on the spectral sensitivity of L-type and R/G-type cone horizontal cells were also studied. The spectral sensitivity of L-type cells, determined just after background illumination was extinguished, agreed reasonably well with that of red-sensitive (R-) cones, but it matched better that of green-sensitive (G-) cones when determined in prolonged darkness. We further show that depolarizing responses of R/G-type cone horizontal cells to long-wavelength flashes, driven by R-cones, were abolished after prolonged darkness. Taken together, these results suggest that input from R-cones converging onto the cone horizontal cells is more significantly suppressed after prolonged dark adaptation than input from G-cones. Due to the suppression of the R-cone input, enhancement of responses of the L-type cone horizontal cells to long-wavelength stimulation in the presence of a green background light was no longer seen after prolonged darkness.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在完整、固定的鲤鱼睁开的眼睛中,细胞内记录了视锥和视杆驱动的水平细胞的光反应,并研究了长时间黑暗对这些细胞的影响。当视网膜处于黑暗中时,视锥水平细胞对每10分钟呈现一次的中等强度测试闪光的反应大小逐渐且稳定地减小(暗抑制效应)。在重复呈现测试闪光后,细胞的光反应性增强。相比之下,视杆水平细胞没有表现出暗抑制效应,并且这些细胞在黑暗中的光反应性增加。还研究了长时间黑暗对L型和R/G型视锥水平细胞光谱敏感性的影响。在背景光照熄灭后立即测定的L型细胞的光谱敏感性与红敏(R-)视锥的光谱敏感性相当吻合,但在长时间黑暗中测定时,它与绿敏(G-)视锥的光谱敏感性更匹配。我们进一步表明,在长时间黑暗后,由R视锥驱动的R/G型视锥水平细胞对长波长闪光的去极化反应被消除。综上所述,这些结果表明,在长时间暗适应后,汇聚到视锥水平细胞上的R视锥的输入比G视锥的输入受到更显著的抑制。由于R视锥输入的抑制,在长时间黑暗后,在绿色背景光存在的情况下,L型视锥水平细胞对长波长刺激的反应增强不再可见。(摘要截断于250字)

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