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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Light paths in retinal vessel oximetry
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Light paths in retinal vessel oximetry

机译:视网膜血管血氧饱和度测定中的光路

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The oxygen utilization and, therefore, the metabolic state, of a distinctive area of the retina may be calculated from the diameter of the supplying artery and vein, the haemoglobin oxygenation, and the velocity of the blood. The first two parameters can be determined by imaging spectrometry at the patients ocular fundus. However the reflected light emerging from a vessel followed different pathways through the ocular fundus layers and the vessel embedded in the retina. The contribution of the single pathways to the vessel reflection profile is investigated by a Monte Carlo simulation. Considering retinal vessels with diameters of 25-200 /spl mu/m we found the reflection from a thin vessel to be determined by the single and double transmission of light at 560 nm. The backscattering from the blood column determines the reflectance in the case of a thick vessel. However, both components are in the same order of magnitude. This has to be considered in the calculation of the oxygen saturation of blood in retinal vessels from their reflection spectra.
机译:可以根据供血动脉和静脉的直径,血红蛋白的氧合和血液的速度来计算视网膜独特区域的氧气利用量,并因此而确定其代谢状态。前两个参数可以通过患者眼底的成像光谱法确定。然而,从血管发出的反射光遵循通过眼底层和嵌入视网膜的血管的不同途径。通过蒙特卡洛模拟研究了单个路径对血管反射轮廓的贡献。考虑到直径为25-200 / spl mu / m的视网膜血管,我们发现细血管的反射取决于560 nm处光的单次和两次透射。在血管较厚的情况下,来自血柱的反向散射决定了反射率。但是,两个组件的数量级相同。在从视网膜血管的反射光谱计算血液中的氧饱和度时必须考虑到这一点。

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