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Analysis of the chicken retina with an adaptive optics multiphoton microscope

机译:自适应光学多光子显微镜分析鸡视网膜

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摘要

The structure and organization of the chicken retina has been investigated with an adaptive optics multiphoton imaging microscope in a backward configuration. Non-stained flat-mounted retinal tissues were imaged at different depths, from the retinal nerve fiber layer to the outer segment, by detecting the intrinsic nonlinear fluorescent signal. From the stacks of images corresponding to the different retinal layers, volume renderings of the entire retina were reconstructed. The density of photoreceptors and ganglion cells layer were directly estimated from the images as a function of the retinal eccentricity. The maximum anatomical resolving power at different retinal eccentricities was also calculated. This technique could be used for a better characterization of retinal alterations during myopia development, and may be useful for visualization of retinal pathologies and intoxication during pharmacological studies.
机译:鸡视网膜的结构和组织已通过自适应光学多光子成像显微镜向后配置进行了研究。通过检测固有的非线性荧光信号,从视网膜神经纤维层到外段的不同深度,对未染色的平置式视网膜组织进行成像。从对应于不同视网膜层的图像堆栈中,重建整个视网膜的体积渲染。从图像直接估计感光体和神经节细胞层的密度与视网膜偏心率的关系。还计算了不同视网膜偏心率下的最大解剖分辨力。该技术可用于更好地表征近视发展过程中的视网膜改变,并且可用于在药理研究过程中可视化视网膜病变和中毒。

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