Recent Progress and Perspectives on Non-Invasive Glucose Sensors

IF 2.4 Q3 ENDOCRINOLOGY & METABOLISM
Nicholas B. Davison, C. Gaffney, J. Kerns, Qiandong D. Zhuang
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引用次数: 4

Abstract

Self-monitoring of blood glucose forms an important part of the management of diabetes and the prevention of hyperglycaemia and hypoglycaemia. Current glucose monitoring methods either use needle-prick enzymatic glucose-meters or subcutaneous continuous glucose sensors (CGM) and thus, non-invasive glucose measurements could greatly improve the self-management of diabetes. A wide range of non-invasive sensing techniques have been reported, though achieving a level of precision comparable to invasive meters remains a challenge. Optical sensors, which utilise the interactions between glucose and light, offer the potential for non-invasive continuous sensing, allowing real-time monitoring of glucose levels, and a range of different optical sensing technologies have been proposed. These are primarily based upon optical absorption and scattering effects and include infrared spectroscopy, Raman spectroscopy and optical coherence tomography (OCT), with other optical techniques such as photoacoustic spectroscopy (PAS) and polarimetry also reported. This review aims to discuss the current progress behind the most reported optical glucose sensing methods, theory and current limitations of optical sensing methods and the future technology development required to achieve an accurate optical-based glucose monitoring device.
无创血糖传感器的研究进展与展望
自我血糖监测是糖尿病管理和预防高血糖、低血糖的重要组成部分。目前的血糖监测方法使用针刺酶促血糖仪或皮下连续血糖传感器(CGM),因此,无创血糖测量可以极大地改善糖尿病的自我管理。广泛的非侵入式传感技术已经被报道,尽管达到与侵入式仪表相当的精度水平仍然是一个挑战。光学传感器利用葡萄糖和光之间的相互作用,提供了非侵入式连续传感的潜力,允许实时监测葡萄糖水平,并且已经提出了一系列不同的光学传感技术。这些主要基于光学吸收和散射效应,包括红外光谱,拉曼光谱和光学相干层析成像(OCT),以及其他光学技术,如光声光谱(PAS)和偏振法也有报道。本文旨在讨论目前报道最多的光学葡萄糖传感方法的进展,光学传感方法的理论和目前的局限性,以及实现精确的光学葡萄糖监测设备所需的未来技术发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.50
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0.00%
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