Department of Systems Engineering and Automation, Miguel Hernández University, 03202 Elche, Spain.
Department of Communications Engineering, Miguel Hernández University, 03202 Elche, Spain.
Sensors (Basel). 2019 Aug 31;19(17):3779. doi: 10.3390/s19173779.
Three microwave sensors are used to track the glucose level of different human blood plasma solutions. In this paper, the sensors are evaluated as glucose trackers in a context close to real human blood. Different plasma solutions sets were prepared from a human blood sample at several added glucose concentrations up to 10 wt%, adding also ascorbic acid and lactic acid at different concentrations. The experimental results for the different sensors/solutions combinations are presented in this work. The sensors show good performance and linearity as glucose level retrievers, although the sensitivities change as the rest of components vary. Different sensor behaviors depending upon the concentrations of glucose and other components are identified and characterized. The results obtained in terms of sensitivity are coherent with previous works, highlighting the contribution of glucose to the dielectric losses of the solution. The results are also consistent with the frequency evolution of the electromagnetic signature of glucose found in the literature, and are helpful for selecting frequency bands for sensing purposes and envisioning future approaches to the challenging measurement in real biological contexts. Discussion of the implications of the results and guidelines for further research and development of more accurate sensors is offered.
三个微波传感器用于跟踪不同人体血浆溶液的葡萄糖水平。在本文中,传感器在接近真实人体血液的环境中被评估为葡萄糖追踪器。从人血样本中制备了不同的血浆溶液,添加了不同浓度的葡萄糖,高达 10wt%,并添加了抗坏血酸和乳酸。这项工作中呈现了不同传感器/溶液组合的实验结果。传感器作为葡萄糖检索器表现出良好的性能和线性度,尽管灵敏度会随着其他成分的变化而变化。根据葡萄糖和其他成分的浓度,识别并描述了不同的传感器行为。根据灵敏度获得的结果与之前的工作一致,突出了葡萄糖对溶液介电损耗的贡献。结果也与文献中发现的葡萄糖的电磁特征的频率演变一致,有助于选择用于感测的频带,并设想在真实生物环境中进行挑战性测量的未来方法。讨论了结果的意义以及进一步研究和开发更精确传感器的指导方针。