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Calibration of an eye oximeter with a dynamic eye phantom

机译:用动态眼部幻影仪校准眼部血氧仪

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Measurements of oxygen saturation and flow in the retina can yield information about the eye health and the onset of eye pathologies such as Diabetic Retinopathy. Recently we have realized an instrument capable of measuring oxygenation in the retina using six different wavelengths and capable of measuring blood flow using speckle-based techniques. The calibration of such instrument is particularly difficult due to the layered structure of the eye and the lack of alternative measurement techniques. For this purpose we have realized an in vitro model of the human eye. The artificial eye is composed of four layers: the retina vessels, the choroids, the retinal pigmented epithelium (RPE), and the sclera. The retina vessels are modeled with 150 μm tube connected to a micro-pump delivering 34 μl/min. The micro-tube, the pump, and a blood reservoir were connected in a closed circulatory system; blood oxygenation in the vessel could be modified using an external oxygen reservoir. The optical properties of all other layers were mimicked using titanium dioxide as a scatterer and ink as an absorber. The absorption coefficient μa and the scattering coefficient μs of these layers were independently measured using an integrating sphere. Absorption and scattering coefficient of all layers were modified before experimental measurements and a Monte Carlo program was finally used to model the experimental results.
机译:视网膜中氧饱和度和血流的测量可以产生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,我们实现了一种仪器,该仪器能够使用六个不同的波长来测量视网膜中的氧合作用,并且能够使用基于斑点的技术来测量血流。由于眼睛的分层结构以及缺乏替代的测量技术,因此这种仪器的校准特别困难。为此,我们实现了人眼的体外模型。人造眼由四层组成:视网膜血管,脉络膜,视网膜色素上皮(RPE)和巩膜。用连接到微型泵的150μm管对视网膜血管建模,该微型泵以34μl/ min的速度输送。将微管,泵和储血罐连接在一个封闭的循环系统中。血管中的血液氧合可以使用外部氧气储存器进行修改。使用二氧化钛作为散射体和墨水作为吸收体来模拟所有其他层的光学特性。使用积分球分别测量这些层的吸收系数μa和散射系数μs。在实验测量之前修改所有层的吸收和散射系数,最后使用蒙特卡罗程序对实验结果进行建模。

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