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Three-Wavelength Method for the Optical Differentiation of Methemoglobin and Sulfhemoglobin in Oxygenated Blood

机译:氧化血液中甲基酚和巯基氟氯蛋白光学分化的三波长法

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Methemoglobinemia and sulfhemoglobinemia are rare, but potentially life threatening, diseases that refer to an abnormal amount of methemoglobin or sulfhemoglobin in the blood, respectively. Unfortunately, blood samples containing abnormal quantities of methemoglobin or sulfhemoglobin have similar spectral characteristics. This makes it difficult to optically differentiate them and, hence, difficult to diagnose a patient with either disease. However, performing treatments for one of the diseases without a correct diagnosis can introduce increased risk to the patient. In this paper, we propose a method for differentiating the presence of methemoglobin and sulfhemoglobin in blood, under several conditions, using reflectance values measured at three wavelengths. In order to validate our method, we perform in silico experiments considering various levels of methemoglobin and sulfhemoglobin. These experiments employ a cell-based light interaction model, known as CLBlood, which accounts for the orientation and distribution of red blood cells. We then discuss the reflectance curves produced by the experiments and evaluate the efficacy of our method. In particular, we consider various experimental conditions by modifying the flow rate, hemolysis level and incident light direction.
机译:甲基喹啉和巯基血红蛋白血症是罕见的,但潜在的危及生命危及,分别是血液中甲状葡萄球菌异常量的疾病。遗憾的是,含有异常量的甲基氯蛋白或巯基血红蛋白的血液样品具有相似的光谱特性。这使得难以光学地区分它们,因此难以诊断任何疾病的患者。然而,对没有正确诊断的疾病进行治疗可以对患者引起增加的风险。在本文中,我们提出了一种在若干条件下将血红蛋白和巯基蛋白和巯羟波蛋白的存在区分使用反射值在三个波长下测量的反射值。为了验证我们的方法,我们在考虑各种水溶性水平的甲状合氯酰蛋白和巯基血红蛋白中进行硅实验。这些实验采用基于细胞的光相互作用模型,称为Clblood,其占红细胞的取向和分布。然后,我们讨论实验产生的反射曲线并评估我们方法的功效。特别是,我们通过修改流速,溶血水平和入射光方向来考虑各种实验条件。

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