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海龟视网膜中不同光谱类型视锥细胞之间的直接兴奋性相互作用。

Direct excitatory interactions between cones of different spectral types in the turtle retina.

作者信息

Normann R A, Perlman I, Kolb H, Jones J, Daly S J

出版信息

Science. 1984 May 11;224(4649):625-7. doi: 10.1126/science.6710161.

Abstract

Cone linear sensitivities to red and green stimuli were measured intracellularly in the dark- and light-adapted turtle retina. Test flashes of small diameter were used to minimize horizontal cell feedback. Light adaptation was achieved with either green or red background illumination. The ratio of cone sensitivities to red and green light depended on the color of the background light and differed from the ratio measured in the dark. Electron microscope studies of Golgi-stained turtle cones revealed direct synaptic connections between red and green cones mediated by cone telodendria. These data indicate that the red cone photoresponse is not univariant as has been previously supposed and suggest that mixing of signals from different spectral classes of cones can occur via direct excitatory connections between cones.

摘要

在暗适应和明适应的海龟视网膜中,细胞内测量了视锥细胞对红色和绿色刺激的线性敏感度。使用小直径的测试闪光来最小化水平细胞反馈。通过绿色或红色背景照明实现明适应。视锥细胞对红光和绿光的敏感度之比取决于背景光的颜色,且与在黑暗中测量的比值不同。对高尔基染色的海龟视锥细胞进行的电子显微镜研究揭示了由视锥细胞终末分支介导的红色和绿色视锥细胞之间的直接突触连接。这些数据表明,红色视锥细胞的光反应并非如先前所认为的那样是单变量的,并表明来自不同光谱类别的视锥细胞的信号混合可能通过视锥细胞之间的直接兴奋性连接发生。

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