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Imaging retinal structures at cellular-level resolution by visible-light optical coherence tomography

机译:通过可见光光学相干断层扫描成像在蜂窝水平分辨率下的视网膜结构

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摘要

In vivo high-resolution images are the most direct way to understand retinal function and diseases. Here we report the use of visible-light optical coherence tomography with volumetric registration and averaging to achieve cellular-level retinal structural imaging in a rat eye, covering the entire depth of the retina. Vitreous fibers, nerve fiber bundles, and vasculature were dearly revealed, as well as at least three laminar sublayers in the inner plexiform layer. We also successfully visualized ganglion cell somas in the ganglion cell layer, cells in the inner nuclear layer, and photoreceptors in the outer nuclear layer and ellipsoid zone. This technique provides, to the best of our knowledge, a new means to visualize the retina in vivo at a cellular resolution and may enable detection or discovery of cellular neuronal biomarkers to help better diagnose ocular disease. (C) 2020 Optical Society of America
机译:体内高分辨率图像是理解视网膜功能和疾病的最直接方式。 在这里,我们报告使用可见光光学相干性断层扫描与体积配准和平均值,以实现大鼠眼睛中的细胞级视网膜结构成像,覆盖视网膜的整个深度。 玻璃纤维,神经纤维束和脉管系统被透露,并且在内络合物层中的至少三个层子子层。 我们还成功地在神经节细胞层,内核层中的细胞和外核层和椭圆形区的感光体中成功地显示了神经节细胞索马斯。 这种技术据我们所知,以细胞分辨率的蜂窝分辨率可视化视网膜的新方法,并且可以使细胞神经元生物标志物的检测或发现能够更好地诊断眼部疾病。 (c)2020美国光学学会

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