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Non-invasive blood glucose monitoring with Raman spectroscopy: prospects for device miniaturization

机译:随着拉曼光谱的非侵袭性血糖监测:装置小型化的前景

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The number of patients with diabetes has reached over 350 million, and still continues to increase. The need for regular blood glucose monitoring sparks the interest in the development of modern detection technologies. One of those methods, which allows for noninvasive measurements, is Raman spectroscopy. The ability of infrared light to penetrate deep into tissues allows for obtaining measurements through the skin without its perforation. This paper presents the limitations and possibilities of non-invasive blood glucose monitoring with Raman spectroscopy. Especially focusing on the possibilities for device miniaturization. Such device incorporates a Raman spectrometer, a fiber-optical probe, and a computing device (microcontroller, smartphone, etc.) which calculates the glucose concentration using specialized algorithms. Simplification of device design, as well as turbidity correction technique and a new proposed method of synchronized detection are described.
机译:糖尿病患者的数量已达到3.5亿,仍然继续增加。对常规血糖监测的需求引起了现代检测技术发展的兴趣。允许非侵入性测量的那些方法之一是拉曼光谱。红外光渗透到组织中的能力允许通过皮肤通过皮肤获得测量。本文介绍了利用拉曼光谱法的无侵袭性血糖监测的局限性和可能性。特别是专注于设备小型化的可能性。这种装置包括拉曼光谱仪,光纤探针和计算装置(微控制器,智能手机等),其使用专用算法计算葡萄糖浓度。描述了装置设计的简化,以及浊度校正技术和新的同步检测方法。

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