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Research of transmissive near infrared spectroscopy for non-invasive blood glucose measurement

机译:非侵入性血糖测量透射近红外光谱研究

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Near infrared (NIR) has prospectively applied in non-invasive blood glucose measurement due to glucose absorption among the 1.0-2.5μm spectral bands. However, this significant technology is hard to be developed because of other blood components and low signal-to-noise ratio (SNR). In this work, we presented a non-invasive glucose measurement system using Fourier transform spectrometer which will work in fingertips or other human body tissues. A refrigerated InGaAs detector with high quantum efficiency performing well in the range of 1.0-1.7μm wavelength is used to acquire transmissive radiation. Preliminary experiment investigations were set up to test glucose levels of aqueous solutions with different concentrations. The analytical modeling of the interferogram data is based on arithmetic Fourier transform and supported by the curvilineal characterization. Experimental results show the variation of light intensity among different glucose concentrations and emphasize the obvious absorption of glucose in NIR wave-range. This study confirms the suitability that NIR can be developed in non-invasive glucose measurement.
机译:由于1.0-2.5μm光谱带中的葡萄糖吸收,近红外(NIR)近期应用于非侵入性血糖测量。然而,由于其他血液成分和低信噪比(SNR),这种显着的技术是难以开发的。在这项工作中,我们介绍了一种使用傅里叶变换光谱仪的非侵入性葡萄糖测量系统,其将在指尖或其他人体组织中工作。使用高量子效率的冷藏InGaAs检测器在1.0-1.7μm波长范围内执行良好的透射辐射。建立初步实验调查,以试验不同浓度的水溶液的葡萄糖水平。干涉图数据的分析建模基于算术傅里叶变换并由曲线表征支持。实验结果表明了不同葡萄糖浓度的光强度的变化,并强调了NIR波浪范围内的葡萄糖的明显吸收。本研究证实了NIR可以在非侵入性葡萄糖测量中进行的适用性。

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