Witkovsky P, Stone S
Daniel B. Kirby Eye Institute, Department of Ophthalmology, New York University Medical Center, NY 10016.
Exp Biol. 1987;47(1):13-22.
Under mesopic conditions, the light-evoked waveform of horizontal cells in Xenopus retina reflects synaptic input from both rod and cone photoreceptors. These inputs interact non-linearly: the response to a weak red (cone-effective) flash is increased up to four-fold when the red stimulus falls on a green (rod-effective) background by reference to the response elicited by the same red flash on a dark field. We refer to this phenomenon as enhancement. It was not observed either when stimulus and field wavelengths were reversed or were of the same color. Enhancement was not altered by polarization of the horizontal cell membrane up to +/- 30 mV with extrinsic current. Enhancement could not be elicited with any combination of test and background wavelengths under photopic conditions. Superfusion of the retina with GABA resulted in a hyperpolarization of the horizontal cell membrane and an emphasis of the rod input to the horizontal cell light-evoked response. Picrotoxin depolarized the cell and favored the cone input. Enhancement was altered in predictable ways by these drugs. Glycine reduced selectively the cone input to the horizontal cell, whereas its antagonist, strychnine, increased the rod input. The results are interpreted to indicate that the excitability of the horizontal cell is modified both by distal and proximal retinal circuits; a glycinergic interplexiform cell probably plays a role in the latter pathway.
在中间视觉条件下,非洲爪蟾视网膜水平细胞的光诱发波形反映了来自视杆和视锥光感受器的突触输入。这些输入以非线性方式相互作用:当红色刺激落在绿色(视杆有效)背景上时,相对于在暗场中相同红色闪光所引发的反应,对微弱红色(视锥有效)闪光的反应增加了四倍。我们将此现象称为增强。当刺激和背景波长颠倒或颜色相同时,未观察到这种现象。用外部电流将水平细胞膜极化至+/- 30 mV时,增强现象未改变。在明视觉条件下,任何测试和背景波长的组合都无法引发增强。用GABA灌注视网膜会导致水平细胞膜超极化,并增强视杆对水平细胞光诱发反应的输入。印防己毒素使细胞去极化,并有利于视锥输入。这些药物以可预测的方式改变了增强现象。甘氨酸选择性地减少了视锥对水平细胞的输入,而其拮抗剂士 的宁则增加了视杆输入。结果表明,水平细胞的兴奋性受到视网膜远端和近端回路的调节;甘氨酸能的网间细胞可能在后一种途径中起作用。