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Continuous noninvasive glucose monitoring; water as a relevant marker of glucose uptake in vivo

机译:连续无血糖监测; 水作为体内葡萄糖摄取的相关标志物

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With diabetes set to become the number 3 killer in theWestern hemisphere and proportionally growing in other parts of the world, the subject of noninvasive monitoring of glucose dynamics in blood remains a "hot" topic, with the involvement of many groups worldwide. There is a plethora of techniques involved in this academic push, but the so-called multisensor system with an impedance-based core seems to feature increasingly strongly. However, the symmetrical structure of the glucose molecule and its shielding by the smaller dipoles of water would suggest that this option should be less enticing. Yet there is enough phenomenological evidence to suggest that impedance-based methods are truly sensitive to the biophysical effects of glucose variations in the blood. We have been trying to answer this very fundamental conundrum: "Why is impedance or dielectric spectroscopy sensitive to glucose concentration changes in the blood and why can this be done over a very broad frequency band, including microwaves?" The vistas for medical diagnostics are very enticing. There have been a significant number of papers published that look seriously at this problem. In this review, we want to summarize this body of research and the underlying mechanisms and propose a perspective toward utilizing the phenomena. It is our impression that the current world view on the dielectric response of glucose in solution, as outlined below, will support the further evolution and implementation toward practical noninvasive glucose monitoring solutions.
机译:随着糖尿病的糖尿病成为西班牙半球的3号杀手,在世界其他地区成正比,血液中葡萄糖动力学的非侵入性监测的主题仍然是“热门”的话题,涉及全球许多团体的参与。在这一学术推动中有一种涉及的技巧,但所谓的具有阻抗的核心的多传感器系统似乎越来越强烈地特征。然而,葡萄糖分子的对称结构及其较小的水浸水的屏蔽建议该选项应较少诱人。然而,有足够的现象学证据表明基于阻抗的方法对血液中葡萄糖变化的生物物理作用真正敏感。我们一直试图回答这个非常基本的难题:“为什么对血液浓度的血糖浓度变化敏感的阻抗或介电光谱敏感,为什么可以在非常宽的频段内完成,包括微波?”医疗诊断的VISTAS非常诱人。出版了大量的论文,这在这个问题上严重看起来。在这篇综述中,我们希望总结该研究机构和潜在机制,并提出了利用该现象的视角。我们的印象是,如下概述的溶液中葡萄糖的介电响应的目前的世界观将支持进一步的进化和实施实际的非侵入性葡萄糖监测解决方案。

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