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兔视网膜中视杆细胞以及经免疫细胞化学鉴定的“蓝色”和“绿色”视锥光感受器的区域地形分布。

Regional topography of rod and immunocytochemically characterized "blue" and "green" cone photoreceptors in rabbit retina.

作者信息

Famiglietti E V, Sharpe S J

机构信息

Department of Anatomy, University of Calgary, Alberta, Canada.

出版信息

Vis Neurosci. 1995 Nov-Dec;12(6):1151-75. doi: 10.1017/s0952523800006799.

Abstract

Evidence from several sources indicates that the photoreceptors of rabbit retina include rods, green cones and blue cones, and that blue-green color opponency occurs in select retinal ganglion cells. One of us (Famiglietti) has identified wide-field cone bipolar cells as probable blue-cone-selective bipolars, and type C horizontal cells as possibly connected to blue cones. We wished to extend the analysis of blue cone pathways in rabbit retina and to characterize the topographic distribution of blue and green cones. Two monoclonal antibodies raised against chicken visual pigments are reported to label medium- and long-wavelength cones (COS-1) and short-wavelength cones (OS-2) in all mammalian retinas studied thus far (Szél and colleagues). Using selective labeling with these two antibodies and a nonselective method in nasal and temporal halves of the same retinas, we have found that densities of photoreceptors vary systematically, depending upon the size of the eye and age of the animal. In 'standard' New Zealand rabbits of 2-3 kg (2-3 months old), rods reached a peak density of about 300,000/mm2 just dorsal to the visual streak, while cones exhibit peak density at mid-visual streak of about 18,000/mm2. Published measurements of visual acuity in rabbit are less than predicted by this calculation. The ratio of cones to rods is significantly higher in ventral retina, where the density of cones declines to a plateau of 10,000-12,000/mm2, when compared to dorsal retina, where cones are uniformly distributed at a density of about 7000/mm2. The density of OS-2 labeled (presumably "blue") cones is uniformly low, 1000-1500/mm2, in a wide expanse that includes dorsal retina, the visual streak, and much of ventral retina, except for a region of higher density along the vertical midline. We confirm that there is a far ventral horizontal region near the perimeter that is populated exclusively by a high density (about 13,000/mm2) of OS-2-positive cones (Juliusson and colleagues). This region does not extend to the ventral retinal margin, however, where cone density drops precipitously. Transitional zones between COS-1 and OS-2 labeling, in a region of relatively high and uniform cone density, where sums of COS-1 and OS-2 labeling are higher than expected and in which weakly and strongly labeled cones are intermixed, raise questions about the identities of the visual pigment epitopes, the possibility of double labeling, and therefore the possibility of dual expression of pigments in single cones. The "inverted-T-shaped" topography of higher density OS-2 labeling raises doubts about the significance of a ventral concentration of blue cones for visual function in rabbit retina.

摘要

来自多个来源的证据表明,兔视网膜的光感受器包括视杆细胞、绿色视锥细胞和蓝色视锥细胞,并且在特定的视网膜神经节细胞中存在蓝绿色拮抗。我们中的一人(法米列蒂)已确定宽视野视锥双极细胞可能是蓝色视锥细胞选择性双极细胞,而C型水平细胞可能与蓝色视锥细胞相连。我们希望扩展对兔视网膜中蓝色视锥细胞通路的分析,并表征蓝色和绿色视锥细胞的地形分布。据报道,针对鸡视觉色素产生的两种单克隆抗体可标记迄今为止研究的所有哺乳动物视网膜中的中长波长视锥细胞(COS-1)和短波长视锥细胞(OS-2)(塞尔及其同事)。通过在同一只视网膜的鼻侧和颞侧半部分使用这两种抗体进行选择性标记以及一种非选择性方法,我们发现光感受器的密度会系统地变化,这取决于眼睛的大小和动物的年龄。在2 - 3千克(2 - 3个月大)的“标准”新西兰兔中,视杆细胞在视觉条纹背侧达到峰值密度约300,000个/mm²,而视锥细胞在视觉条纹中部达到峰值密度约18,000个/mm²。已发表的兔视力测量值低于此计算预测值。与背侧视网膜相比,腹侧视网膜中视锥细胞与视杆细胞的比例显著更高,背侧视网膜中视锥细胞均匀分布,密度约为7000个/mm²,而腹侧视网膜中视锥细胞密度下降至10,000 - 12,000个/mm²的平台期。在包括背侧视网膜、视觉条纹和大部分腹侧视网膜的广阔区域中,OS-2标记的(可能是“蓝色”)视锥细胞密度均匀较低,为1000 - 1500个/mm²,但沿垂直中线有一个密度较高的区域除外。我们证实,在周边附近有一个非常腹侧的水平区域,该区域仅由高密度(约13,000个/mm²)的OS-2阳性视锥细胞组成(朱利松及其同事)。然而,这个区域并没有延伸到腹侧视网膜边缘,在那里视锥细胞密度急剧下降。在视锥细胞密度相对较高且均匀的区域,COS-1和OS-2标记之间的过渡区,其中COS-1和OS-2标记的总和高于预期,并且弱标记和强标记的视锥细胞相互混合,这引发了关于视觉色素表位的身份、双重标记的可能性以及因此单一视锥细胞中色素双重表达的可能性的问题。高密度OS-2标记的“倒T形”地形对兔视网膜中腹侧蓝色视锥细胞浓度对视觉功能的意义提出了质疑。

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