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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Noninvasive blood glucose assay using a newly developed near-infrared system
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Noninvasive blood glucose assay using a newly developed near-infrared system

机译:使用新开发的近红外系统进行非血糖血糖试验

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摘要

This paper reports in vivo near-infrared (NIR) noninvasive blood glucose assay using dermis tissue spectra. We assume that the glucose content in dermis tissue traces the variations in blood glucose. For dermis spectra measurements, epidermis, especially stratum corneum, acts as an interference in skin tissue. Thus, we have developed a method for the selective measurement of dermis tissue spectra, enabling us to obtain better quality spectra for an accurate blood glucose assay. The selective measurement of the dermis spectra realized by using a newly developed fiber-optic probe that consists of source and detector optical fibers separated by 0.65 mm on a skin surface. The light path in the skin tissue for this geometry has been simulated by a Monte Carlo method. The simulation results show that detected light mainly interrogates dermis tissue. As the absorbance signal of glucose in human tissue is extremely small, the quality of the measured spectra is critical for the reliable assay. The present method for blood glucose assay has been applied to one Type 1 diabetic. The correlation coefficient between the blood glucose content predicted by NIR spectra and those measured by finger-prick was 0.928 and the standard error of prediction was 32.2 mg/dL. These results demonstrate the potential of our methodology for noninvasive NIR blood glucose assay.
机译:本文使用Dermis组织光谱在体内近红外(NIR)非血糖血糖测定中报告。我们假设真皮组织中的葡萄糖含量追踪血糖的变化。对于真皮光谱测量,表皮,尤其是层内肌,作为皮肤组织的干扰。因此,我们开发了一种用于选择性测量真皮组织谱的方法,使我们能够获得精确血糖测定的更好的质量光谱。通过使用新开发的光纤探针实现的真皮光谱的选择性测量,该光纤探针由源极和检测器光纤组成,在皮肤表面上分离0.65mm。对于该几何形状的皮肤组织中的光路已经通过蒙特卡罗方法模拟。仿真结果表明,检测到的光主要询问真皮组织。随着人体组织中葡萄糖的吸光度信号极小,测量光谱的质量对于可靠的测定至关重要。本发明的血糖测定方法已应用于1型糖尿病患者。由NIR光谱预测的血糖含量与手指刺指数的血糖含量之间的相关系数为0.928,预测标准误差为32.2mg / dL。这些结果表明了我们对非耐受性鼻血糖测定方法的方法的潜力。

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