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Noninvasive imaging of the human rod photoreceptor mosaic using a confocal adaptive optics scanning ophthalmoscope

机译:使用共聚焦自适应光学扫描检眼镜对人体视杆感光体镶嵌物进行无创成像

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The rod photoreceptors are implicated in a number of devastating retinal diseases. However, routine imaging of these cells has remained elusive, even with the advent of adaptive optics imaging. Here, we present the first in vivo images of the contiguous rod photoreceptor mosaic in nine healthy human subjects. The images were collected with three different confocal adaptive optics scanning ophthalmoscopes at two different institutions, using 680 and 775 nm superluminescent diodes for illumination. Estimates of photoreceptor density and rod:cone ratios in the 5°–15° retinal eccentricity range are consistent with histological findings, confirming our ability to resolve the rod mosaic by averaging multiple registered images, without the need for additional image processing. In one subject, we were able to identify the emergence of the first rods at approximately 190 μm from the foveal center, in agreement with previous histological studies. The rod and cone photoreceptor mosaics appear in focus at different retinal depths, with the rod mosaic best focus (i.e., brightest and sharpest) being at least 10 μm shallower than the cones at retinal eccentricities larger than 8°. This study represents an important step in bringing high-resolution imaging to bear on the study of rod disorders.
机译:视杆感光细胞与多种毁灭性视网膜疾病有关。然而,即使随着自适应光学成像的出现,这些细胞的常规成像仍然难以实现。在这里,我们展示了九个健康人类受试者中连续杆感光受体镶嵌的第一张体内图像。在两个不同的机构使用三个不同的共焦自适应光学扫描检眼镜收集图像,并使用680和775 nm超发光二极管进行照明。在5°–15°视网膜偏心率范围内的光感受器密度和视杆:锥比的估计与组织学检查结果一致,证实了我们能够通过对多个配准图像进行平均来解决视杆镶嵌的能力,而无需进行其他图像处理。在一个受试者中,与先前的组织学研究一致,我们能够鉴定出距中心凹中心约190μm的第一个杆的出现。视杆和视锥光感受器镶嵌在不同的视网膜深度处聚焦,视杆镶嵌最佳聚焦(即最亮和最锐利)比视网膜偏心度大于8°的视锥要浅至少10μm。这项研究是将高分辨率成像技术应用于杆状疾病研究的重要一步。

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