拉曼光谱
小型化
化学
连续血糖监测
分光计
信号(编程语言)
生物医学工程
光谱学
分析化学(期刊)
光容积图
持续监测
血糖监测
拉曼散射
纳米技术
核磁共振
光谱分析
光学
血糖自我监测
光电子学
生物分子
糖尿病
作者
Arianna Bresci,Youngkyu Kim,Miyeon Jue,Peter T. C. So,Jeon Woong Kang
标识
DOI:10.1021/acs.analchem.5c01146
摘要
High Resolution Image Download MS PowerPoint Slide Noninvasive blood glucose monitoring with precision comparable to standard invasive or minimally invasive methods has been a long-sought goal, especially as diabetes rates soar, with 592 million cases worldwide expected by 2035. Various optical and spectroscopic technologies have challenged noninvasive continuous glucose monitoring (CGM), but most methods fail to detect physiological levels or lack miniaturization for practical use. Based on our previous success in direct observation of glucose signals from in vivo skin, we developed a band-pass Raman spectroscopy method that enables noninvasive, physiological-level CGM in a compact device. Using off-axis 830 nm near-infrared illumination and intraspectrum reference, we eliminate most elastically scattered photons, revealing the glucose Raman signal through an amplified photodetector, while compensating for background variations. Our approach, validated on both tissue phantoms and in vivo human skin, overcomes bulky spectrometers and makes portable Raman-based CGM devices a reality.
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