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首页> 外文期刊>Science Advances >Noninvasive, wearable, and tunable electromagnetic multisensing system for continuous glucose monitoring, mimicking vasculature anatomy
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Noninvasive, wearable, and tunable electromagnetic multisensing system for continuous glucose monitoring, mimicking vasculature anatomy

机译:用于连续葡萄糖监测的非侵袭性,可穿戴和可调谐电磁多抗体系统,模拟脉管系统解剖学

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摘要

Painless, needle-free, and continuous glucose monitoring sensors are needed to enhance the life quality of diabetic patients. To that extent, we propose a first-of-its-kind, highly sensitive, noninvasive continuous glycemic monitoring wearable multisensor system. The proposed sensors are validated on serum, animal tissues, and animal models of diabetes and in a clinical setting. The noninvasive measurement results during human trials reported high correlation (0.9) between the system’s physical parameters and blood glucose levels, without any time lag. The accurate real-time responses of the sensors are attributed to their unique vasculature anatomy–inspired tunable electromagnetic topologies. These wearable apparels wirelessly sense hypo- to hyperglycemic variations with high fidelity. These components are designed to simultaneously target multiple body locations, which opens the door for the development of a closed-loop artificial pancreas.
机译:无痛,无针和连续的葡萄糖监测传感器需要增强糖尿病患者的寿命。在这种程度上,我们提出了一流的,高度敏感,无血液血糖监测可穿戴多传感器系统。所提出的传感器在糖尿病的血清,动物组织和动物模型和临床环境中验证。人类试验期间的非侵入性测量结果报告了系统的物理参数和血糖水平之间的高相关(> 0.9),而无需任何时间滞后。传感器的准确实时响应归因于其独特的脉管系统解剖学可调电磁拓扑。这些可穿戴服装无线地检测高保真性的高血糖变化。这些部件被设计为同时瞄准多个身体位置,该位置打开用于开发闭环人工胰腺的门。

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