{"title":"Receptive field arrangement of color-opponent bipolar and amacrine cells in the carp retina.","authors":"G Mitarai, T Goto, S Takagi","doi":"","DOIUrl":null,"url":null,"abstract":"<p><p>Seven color-opponent bipolar and 50 color-opponent amacrine cells were identified in the carp retina and their spectral responses examined by using procion-dye-filled micropipets for staining and recording. Four of the bipolar cells had a +R-G-and three a +Y-B-type chromatic center. Six of the bipolar cells showed hyperpolarizing non-color-opponent surrounds, while one +R-G-type cell had a +Y-RB-type surround. This cell showed the greatest complexity of all bipolar cells identified so far, and its spectral property strongly suggests the existence of an intimate relation between it and +Y-RB-type horizontal cells. Examination and classification of the 50 amacrine cells revealed that 17 belonged to the +R-G, 16 to the -R+G, 6 to the +Y-B, and 11 to the -Y + B type. Most of these cells showed non-color-opponent surrounds. Yet, the similarity of the chromatic arrangement of their centers with that of the ganglion cells shows that the four basic types of color channels are already in existence in the amacrine cells where they seem to originate.</p>","PeriodicalId":76537,"journal":{"name":"Sensory processes","volume":"2 4","pages":"375-82"},"PeriodicalIF":0.0000,"publicationDate":"1978-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Sensory processes","FirstCategoryId":"1085","ListUrlMain":"","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Seven color-opponent bipolar and 50 color-opponent amacrine cells were identified in the carp retina and their spectral responses examined by using procion-dye-filled micropipets for staining and recording. Four of the bipolar cells had a +R-G-and three a +Y-B-type chromatic center. Six of the bipolar cells showed hyperpolarizing non-color-opponent surrounds, while one +R-G-type cell had a +Y-RB-type surround. This cell showed the greatest complexity of all bipolar cells identified so far, and its spectral property strongly suggests the existence of an intimate relation between it and +Y-RB-type horizontal cells. Examination and classification of the 50 amacrine cells revealed that 17 belonged to the +R-G, 16 to the -R+G, 6 to the +Y-B, and 11 to the -Y + B type. Most of these cells showed non-color-opponent surrounds. Yet, the similarity of the chromatic arrangement of their centers with that of the ganglion cells shows that the four basic types of color channels are already in existence in the amacrine cells where they seem to originate.
在鲤鱼视网膜中鉴定了7个反色双极细胞和50个反色无突细胞,并利用生产染料填充的微管对其光谱反应进行了染色和记录。4个双极细胞为+ r - g型,3个为a + y - b型染色中心。6个双极细胞呈超极化非反色环绕,1个+ r- g型细胞呈+ y - rb型环绕。该细胞是迄今为止发现的所有双极细胞中最复杂的,其光谱特性强烈表明它与+ y - rb型水平细胞之间存在密切关系。50个无毛细胞的检查和分类显示,+R-G型17个,-R+G型16个,+Y-B型6个,-Y + B型11个。这些细胞大部分呈非反色包围。然而,它们中心的颜色排列与神经节细胞的颜色排列的相似性表明,四种基本类型的颜色通道已经存在于它们似乎起源的无毛细胞中。