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Extraction of Optical Rotation from Chiral Turbid Medium with Mueller Matrix Decomposition

机译:Mueller矩阵分解从手性混浊介质中提取旋光度

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Optical activity is the intrinsic property of chiral molecules. Investigation of optical activity is particularly important for diagnosing and monitoring blood glucose of diabetes. The experimental setup to obtain the Mueller matrix in the forward detection geometry is used. Three kinds of chiral turbid media are selected to be studied in the experiment. The first is the tissue phantom composed of an aqueous solution of glucose mixed with PST sphere suspensions. The second is the actual chicken blood mixed with glucose solution. The last is the vein blood plasma of diabetic patients. The results presented in this study demonstrate that the method of Mueller matrix decomposition can be used to quantitatively extract the optical rotation of chiral molecule in turbid medium. The rotation angle has linear relationship with the concentration of the optical activity material when the scattering coefficient of the turbid medium maintains unchanged. The scattering effect enlarges the rotation angle. Furthermore, optical rotation abides by the Drude's dispersion equation. The decomposition method also has been found useful applications in quantifying the optical rotations due to blood glucose in diabetic patients. The diabetic severity status can be distinguished with the rotation angle of glucose by using the decomposition method and also are in accordance with the clinical diagnosis. Thus, the method of Mueller matrix decomposition has promising applications in diabetic diagnosis.
机译:旋光性是手性分子的固有性质。光学活动的研究对于诊断和监测糖尿病的血糖尤为重要。使用在前向检测几何中获得Mueller矩阵的实验装置。实验中选择了三种手性混浊介质进行研究。第一个是组织模型,由葡萄糖水溶液和PST球悬浮液混合而成。第二是实际的鸡血中掺有葡萄糖溶液。最后是糖尿病患者的静脉血浆。这项研究提出的结果表明,Mueller矩阵分解方法可用于定量提取浑浊介质中手性分子的旋光性。当混浊介质的散射系数保持不变时,旋转角与旋光材料的浓度成线性关系。散射效应扩大了旋转角度。此外,旋光遵守Drude的色散方程。还发现分解方法在量化糖尿病患者中由于血糖引起的旋光度方面有用的应用。糖尿病的严重程度可以通过分解法与葡萄糖的旋转角度进行区分,也符合临床诊断。因此,穆勒矩阵分解法在糖尿病诊断中具有广阔的应用前景。

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