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Ultrastructural study of retinal development in the turtle Trachemys scripta elegans (vol 135, pg 205, 2016)

机译:乌龟曲米秀丽杆菌视网膜发育超微结构研究(Vol 135,PG 205,2016)

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摘要

The present study was conducted by using light and transmission electron microscopy to examine the morphologic development of turtle retina from embryonic stage 18 (S18) to S26 (hatching). Particular attention was paid to the formation of functional structures such as neurites, synapses, photoreceptors, among others, and the moment that chemical synapses appear in the outer and inner plexiform layers. The results show that retinal differentiation in the turtle follows the vitreal to scleral morphological differentiation of retinal cells. Moreover, the central region of the optic cup is most advanced compared to the peripheral parts. Early functional plexiform layers, based on appearance of synapses, precede the complete differentiation of photoreceptors. The first synaptic structures occur in the inner plexiform layer before the outer plexiform layer. Receptor outer segments and first synaptic ribbon in receptor synaptic terminals initiate the differentiation at the same time, but final maturation includes dendritic invaginations of bipolar and horizontal cells in the receptor terminals. We assume that at birth, the turtle retina has achieved the ability to see.
机译:通过使用光和透射电子显微镜进行本研究,以检查从胚胎级18(S18)到S26(阴影)的乌龟视网膜的形态学发育。特别注意形成功能结构,例如神经肌腱,突触,感光体等,以及化学突触在外部和内部金属状层中出现的那一刻。结果表明,乌龟的视网膜分化遵循肌肌肌肤,对视网膜细胞的巩膜形态分化。此外,与周边部件相比,光杯的中心区域最先进。早期功能性络植物层基于突触的外观,在光感受器的完全分化之前。第一突触结构在外络合物层之前发生在内络合物层中。受体外部段和受体突触末端的第一突触丝带同时引发分化,但是最终成熟包括受体终端中双极和水平细胞的树突内疾病。我们假设在出生时,龟视网膜达到了能力。

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