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Modeling of Diffuse Reflectance Near-infrared Spectroscopy Based System for Noninvasive Tissue Glucose Level Measuring

机译:基于非侵入组织葡萄糖水平测量的基于漫反射近红外光谱法的模型

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Diffuse reflectance IR-spectroscopy is one of the most promising method of noninvasive blood glucose measuring. Compared to the transmission spectroscopy, the method has a number of significant advantages related to power efficiency and ergonomics. The paper considers the problem of calculating the tissue glucose by the photodetectors’ data. The considered measuring system includes a laser diode and a group of coplanar photodiodes detecting reflected flux. The laser is placed closely to biological tissue and generates divergent beam with 1600 nm wavelength. The tissue is considered as multilayer with isotropic and homogenous layers. Diffuse scattering on the interfaces is described by Lambert cosine law, and Lambert-Beer law describes attenuation in layers. For integration of the radiation intensity over the detector area, the solid angles of Cartesian grid are determined using vector analysis. The model is applicable for tissue glucose numerical calculation by the photodetectors data.
机译:弥漫反射率IR光谱是最有希望的非血液血糖测量方法之一。与传输光谱相比,该方法具有与功率效率和人体工程学相关的许多有关的优点。本文考虑了光电探测器数据计算组织葡萄糖的问题。所考虑的测量系统包括激光二极管和检测反射通量的一组共面光电二极管。激光与生物组织紧密放置并产生具有1600nm波长的发散梁。组织被认为是具有各向同性和均匀层的多层。漫射散射对界面上的散射由Lambert余弦法描述,兰伯特 - 啤酒法描述了层中的衰减。为了整合辐射强度在检测器区域上,使用载体分析确定笛卡尔栅格的固色角度。该模型适用于光电探测器数据的组织葡萄糖数值计算。

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