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拉曼光谱仪采集效率对用于设备小型化的无创血糖检测性能的影响。

Influence of Raman Spectrometer Collection Efficiency on Performance of Noninvasive Blood Glucose Detection for Device Miniaturization.

作者信息

Sang Park Yun, Ahn Sungmo, Chang Hojun, Lee Woochang, Hyun Nam Sung

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:6139-6142. doi: 10.1109/EMBC44109.2020.9175296.

Abstract

Recently the world population with diabetes has increased significantly, and the market demand for noninvasive blood glucose monitoring has increased accordingly. Our previous study demonstrated the capability to detect glucose through the direct observation of glucose Raman fingerprint peaks from in vivo skin but using a benchtop device. From the perspective of commercialization, miniaturized devices are expected to make more impact on the market than bulky benchtop devices. In this study, as an effort for commercialization of noninvasive glucose sensing technology, we investigate the relationship between Raman spectrometer specification, especially collection efficiency, and glucose prediction performance. Raman spectra were synthesized at given spectrometer collection efficiencies in computer simulation, in which spectra are designed to contain glucose signal at specific concentrations. Then, we estimated glucose concentrations back using regression analysis and evaluated prediction performances. Finally, the relationship was analyzed between the collection efficiencies and glucose prediction performances. In order to mimic actual conditions with skin tissue, Monte-Carlo simulations were conducted to count the number of Raman photons escaping from the skin surface in a multi-layered skin model. As the collection efficiency decreased from 3.2 % to 0.2 %, the correlation coefficient between the actual and predicted glucose concentrations dropped from 0.91 to 0.35. The glucose Raman peaks at 1125 cm was identified as the most important wavelength for glucose sensing. This study may help identify optimal Raman spectrometer specifications for transcutaneous blood glucose sensing in miniaturized devices and commercialize noninvasive blood glucose sensors in Raman spectroscopy.

摘要

近年来,全球糖尿病患者人数显著增加,对无创血糖监测的市场需求也相应增长。我们之前的研究表明,使用台式设备能够通过直接观察体内皮肤的葡萄糖拉曼指纹峰来检测葡萄糖。从商业化的角度来看,小型化设备预计比笨重的台式设备对市场产生更大的影响。在本研究中,作为无创葡萄糖传感技术商业化的一项努力,我们研究了拉曼光谱仪规格,特别是收集效率与葡萄糖预测性能之间的关系。在计算机模拟中,以给定的光谱仪收集效率合成拉曼光谱,其中光谱设计为包含特定浓度的葡萄糖信号。然后,我们使用回归分析反推葡萄糖浓度并评估预测性能。最后,分析了收集效率与葡萄糖预测性能之间的关系。为了模拟皮肤组织的实际情况,进行了蒙特卡罗模拟,以计算多层皮肤模型中从皮肤表面逸出的拉曼光子数量。随着收集效率从3.2%降至0.2%,实际和预测葡萄糖浓度之间的相关系数从0.91降至0.35。1125 cm处的葡萄糖拉曼峰被确定为葡萄糖传感的最重要波长。本研究可能有助于确定小型化设备中经皮血糖传感的最佳拉曼光谱仪规格,并使拉曼光谱无创血糖传感器实现商业化。

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