Burkhardt Dwight A
Department of Psychology, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Vis Neurosci. 2011 Jan;28(1):69-75. doi: 10.1017/S0952523810000313. Epub 2010 Nov 19.
Much of what is currently known about the visual response of retinal bipolar cells is based on studies of rod-dominant responses to flashes in the dark in the isolated retina. This minireview summarizes quantitative findings on contrast processing in the intact light-adapted retina based on intracellular recording from more than 400 cone-driven bipolar cells in the tiger salamander: 1) In the main, the contrast responses of ON and OFF cells are surprisingly similar, suggesting a need to refine the view that ON and OFF cells provide the selective substrates for processing of positive and negative contrasts, respectively. 2) Overall, the response is quite nonlinear, showing very high gain for small contrasts, some 10-15 times greater than that of cones, but then quickly approaches saturation for higher contrasts. 3) Under optimal conditions of light adaptation, both classes of bipolar cells show evidence for efficient coding with respect to the contrasts in natural images. 4) There is a marked diversity within both the ON and OFF bipolar cell populations and an absence of discrete subtypes. The dynamic ranges bracket the range of contrasts in nature. 5) For both ON and OFF cells, the receptive field organization shows a striking symmetry between center and surround for responses of the same polarity and thus opposite contrast polarities. 6) The latency difference between ON and OFF cells is about 30 ms, which seems qualitatively consistent with a delay due to the G-protein cascade in ON bipolar cells. 7) In sum, we report quantitative evidence for at least 11 transformations in signal processing that occur between the voltage response of cones and the voltage response of bipolar cells.
目前关于视网膜双极细胞视觉反应的许多知识都基于对分离视网膜中杆体主导的暗视闪光反应的研究。本综述总结了基于对虎螈中400多个视锥驱动双极细胞进行细胞内记录,在完整的光适应视网膜中对比度处理的定量研究结果:1)总体而言,ON型和OFF型细胞的对比度反应惊人地相似,这表明需要修正那种认为ON型和OFF型细胞分别为处理正对比度和负对比度提供选择性底物的观点。2)总体而言,反应是非线性的,对于小对比度显示出非常高的增益,约比视锥细胞高10 - 15倍,但对于更高的对比度则迅速接近饱和。3)在光适应的最佳条件下,两类双极细胞都显示出针对自然图像中的对比度进行有效编码的证据。4)ON型和OFF型双极细胞群体内部存在显著差异,且不存在离散的亚型。动态范围涵盖了自然界中的对比度范围。5)对于ON型和OFF型细胞,感受野组织在相同极性反应(因而对比度极性相反)的中心和周边之间显示出惊人的对称性。6)ON型和OFF型细胞之间的潜伏期差异约为30毫秒,这在定性上似乎与ON型双极细胞中G蛋白级联反应导致的延迟一致。7)总之,我们报告了关于在视锥细胞的电压反应和双极细胞的电压反应之间至少发生11种信号处理转换的定量证据。