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The Application of Monte Carlo Method in the Design of Probe of Non-invasive measurement of Blood Glucose

机译:蒙特卡罗法在血糖非侵入性测量探头设计中的应用

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It is critical to improve the diffuse reflecting light energy for monitoring the blood glucose level from the skin spectra. The optic fiber probe used in non-invasive detection of blood glucose is consisted of one central fiber around with several optic fibers arranged in circle. The distance between central fiber and circle fibers d and the incidence angle β of the central fiber mainly determine the diffuse reflecting light energy. A three-layered skin model and Monte Carlo simulation algorithm are described to simulate the light propagation and distribution in the skin tissue. Simulation results showrf should be greater than 0.05cm and less than 0.1cm, and β should be less than 18°. The simulation results can be used in the probe design.
机译:改善反射光能的漫反射光能,以监测来自皮肤光谱的血糖水平至关重要。用于血糖的非侵入性检测的光纤探针包括一个中央纤维,其周围有几个光纤布置成圆形。中心纤维和圆纤维的距离和中央光纤的入射角β主要决定了反射光能的漫反射。描述了一种三层皮肤模型和蒙特卡罗仿真算法来模拟皮肤组织中的光传播和分布。仿真结果ShowRF应大于0.05cm,小于0.1cm,β应小于18°。仿真结果可用于探头设计。

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