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Glucose content monitoring with time-of-flight technique in aqueous intralipid solution imitating human skin: Monte Carlo simulation

机译:葡萄糖含量监测与飞行时间技术在含水胰岛素水溶液中染色人体皮肤:蒙特卡罗模拟

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Glucose content monitoring is of great importance today due to a number of people suffering from diabetes. In this paper, laser pulses propagation in a sample of aqueous Intralipid solution with glucose is simulated by Monte Carlo method. Effect of glucose is based on refractive index matching of Intralipid vesicles and surrounding water if glucose is added. Temporal profiles of femtosecond pulses (906 nm) diffusely scattered within a 2-mm thick plain glass cuvette with a skin phantom are registered in backward direction by two fiber-optics detectors 0.30 mm in diameter with numerical apertures of 0.19, 0.29, and 0.39. It is revealed that glucose content within the physiological range (100-500 mg/dl) can be detected because of the effect of glucose on the peak pulse intensity and on the area under the pulse temporal profile (energy of the registered pulse).
机译:由于许多患有糖尿病的人,葡萄糖含量监测今天非常重要。本文通过蒙特卡罗法模拟了葡萄糖水溶液中的激光脉冲繁殖。如果加入葡萄糖,葡萄糖的效果基于鞘内囊泡和周围水的折射率匹配。漫反射脉冲(906nm)的时间轮廓散射在2mm厚的玻璃比色皿内,具有皮肤幻影的两种光纤探测器的直径在后方向上,其直径为0.30mm,数值孔径为0.19,0.29和0.39。揭示了物理范围内(100-500mg / d1)内的葡萄糖含量可以被检测,因为葡萄糖对脉冲时间轮廓下的峰值脉冲强度和面积上的影响(注册脉冲的能量)。

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