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首页> 外文期刊>Anatomical science international >Ganglion cell density and oil droplet distribution in the retina of brown-eared bulbul (Hysipetes amaurotis).
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Ganglion cell density and oil droplet distribution in the retina of brown-eared bulbul (Hysipetes amaurotis).

机译:棕耳球茎(Hysipetes amaurotis)视网膜中的神经节细胞密度和油滴分布。

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This study was intended to determine the number and density of both retinal ganglion cells and the oil droplets of cone photoreceptor cells in brown-eared bulbul (Hysipetes amaurotis). For this study birds were killed with proper dose of anesthetic (pentobarbital, 30 mg/kg), and the eyes were removed from the orbital cavity to isolate the retina. For the ganglion cell study retinal whole-mount specimens were prepared and stained with 0.1% cresyl violet. The different types of oil droplets were counted from color microphotographs of freshly prepared retinal samples. The mean total number of ganglion cells was estimated at approximately 2.5 x 10(6); with an average density of 16 523 cells/mm(2). Two high-density areas, namely the central area (CA) and the dorso-temporal area (DTA), are located in the central and dorso-temporal retinas, respectively, in bulbuls (24 032 cells/mm(2) in the CA; 23 113 cells/mm(2) in the DTA). Small ganglion cells persisted in the highest density areas, whereas the largest soma sizes were found in the lowest density areas of the retina. Four types of different colored oil droplets - red, orange, green and clear - were identified with an average density of 29 062/mm(2). Among the different colors, the green oil droplets had a significantly higher population (13 083/mm(2)) than the others across the retina. The central retina had a significantly higher number of all types of oil droplets, at a density of 60 552/mm(2). The density and size of the different colored oil droplets were inversely related across the regions of the retina. Taken together, it is concluded that the CA of the retina is an excellent quality area for visual perception due to peak density of ganglion cells and oil droplets. Moreover, each specific oil droplet makes a distinct contribution to visual perception, thereby ensuring that the bird has a retina that best matches its natural environment and feeding behavior.
机译:这项研究的目的是确定棕色耳小球(Hysipetes amaurotis)中视网膜神经节细胞的数量和密度以及视锥细胞感光细胞的油滴。在本研究中,使用适当剂量的麻醉剂(戊巴比妥,30 mg / kg)杀死家禽,并从眼眶移开眼睛以隔离视网膜。对于神经节细胞研究,制备视网膜整个安装标本,并用0.1%的甲酚紫染色。从新鲜制备的视网膜样品的彩色显微照片对不同类型的油滴进行计数。神经节细胞的平均总数估计约为2.5 x 10(6)。平均密度为16523个/ mm(2)。两个高密度区域,即中央区域(CA)和背颞区域(DTA),分别位于中央和背颞视网膜的球囊中(CA中的24 032个细胞/ mm(2)) ;在DTA中为23113个/ mm(2)。小神经节细胞在密度最高的区域持续存在,而最大的体细胞大小在视网膜的最低密度区域。确定了四种类型的不同颜色的油滴-红色,橙色,绿色和透明-平均密度为29 062 / mm(2)。在不同的颜色中,绿色油滴的数量(13 083 / mm(2))明显高于整个视网膜中的其他数量。中央视网膜的所有类型的油滴数量明显更高,密度为60 552 / mm(2)。不同颜色油滴的密度和大小在整个视网膜区域成反比。综上所述,可以得出结论,由于神经节细胞和油滴的峰值密度,视网膜的CA是视觉感知的优质区域。此外,每个特定的油滴都会对视觉产生明显的影响,从而确保鸟类的视网膜最适合其自然环境和觅食行为。

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