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Simulations of a spatially resolved reflectometry signal from a highly scattering three-layer medium applied to the problem of glucose sensing in human skin

机译:来自高度散射的三层介质的空间分辨反射计信号的仿真,应用于人体皮肤中的葡萄糖感测问题

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摘要

The possibility of using spatially resolved reflectometry (SRR) at a wavelength of 820 nm to detect changes in the optical properties of a highly scattering layered random medium simulating a biological tissue caused by changes in the glucose level is analysed. Model signals from a three-layer biological tissue phantom consisting of two skin layers and a blood layer located between them are obtained by the Monte-Carlo method. It was assumed that variations in the glucose level induce variations in the optical parameters of the blood layer and the bottom skin layer. To analyse the trajectories of photons forming the SRR signal, their scattering maps are obtained. The ratio of the photon path in layers sensitive to the glucose level to the total path in the medium was used as a parameter characterising these trajectories. The relative change in the reflected signal caused by a change in the glucose concentration is analysed depending on the distance between a probe radiation source and a detector. It is shown that the maximum relative change in the signal (about 7%) takes place for the source-detector separation in the range from 0.3 to 0.5 mm depending on the model parameters.
机译:分析了使用波长为820 nm的空间分辨反射法(SRR)来检测由葡萄糖水平变化引起的模拟生物组织的高散射分层随机介质的光学特性变化的可能性。通过蒙特卡洛方法获得的三层生物组织模型的模型信号由两个皮肤层和一个位于它们之间的血液层组成。假定葡萄糖水平的变化引起血液层和皮肤底层的光学参数的变化。为了分析形成SRR信号的光子的轨迹,获得了它们的散射图。将对葡萄糖水平敏感的层中的光子路径与介质中总路径的比值用作表征这些轨迹的参数。由葡萄糖浓度的变化引起的反射信号的相对变化根据探针放射线源与检测器之间的距离来分析。结果表明,根据模型参数的不同,信号源与探测器之间的最大相对变化(约7%)发生在0.3至0.5 mm的范围内。

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