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Dynamic eye phantom for retinal oximetry measurements

机译:动态眼影用于视网膜血氧饱和度测量

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摘要

Measurements of oxygen saturation and flow in the retina can yield information about eye health and the onset of eye pathologies such as diabetic retinopathy. Recently, we developed a multiaperture camera that uses the division of the retinal image into several wavelength-sensitive subimages to compute retinal oxygen saturation. The calibration of such instruments is particularly difficult due to the layered structure of the eye and the lack of alternative measurement techniques. For this purpose, we realize an in vitro model of the human eye composed of a lens, the retina vessel, and three layers: the choroid, the retinal pigmented epithelium, and the sclera. The retinal vessel is modeled with a microtube connected to a micropump and a hemoglobin reservoir in a closed circulatory system. Hemoglobin oxygenation in the vessel could be altered using a reversible fuel cell. The sclera is represented by a Spectralon slab. The optical properties of the other layers are mimicked using titanium dioxide as a scatterer, ink as an absorber, and epoxy as a supporting structure. The optical thickness of each layer of the eye phantom is matched to each respective eye layer.
机译:视网膜中氧饱和度和血流的测量可以得出有关眼睛健康和眼病(如糖尿病性视网膜病)发作的信息。最近,我们开发了一种多孔径相机,该相机将视网膜图像分为几个对波长敏感的子图像,以计算视网膜的氧饱和度。由于眼睛的分层结构以及缺乏替代的测量技术,因此此类仪器的校准特别困难。为此,我们实现了由晶状体,视网膜血管和三层膜组成的人眼的体外模型:脉络膜,视网膜色素上皮和巩膜。用封闭的循环系统中连接到微型泵的微型管和血红蛋白储存器对视网膜血管进行建模。使用可逆燃料电池可以改变容器中的血红蛋白氧合。巩膜由Spectralon平板代表。使用二氧化钛作为散射体,油墨作为吸收剂,以及环氧树脂作为支撑结构来模仿其他层的光学特性。眼模型的每一层的光学厚度与每一相应的眼层相匹配。

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