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First millimeter-wave animal in vivo measurements of L-Glucose and D-Glucose: Further steps towards a non-invasive glucometer

机译:首次对L-葡萄糖和D-葡萄糖进行毫米波动物体内测量:迈向无创血糖仪的进一步步骤

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The authors present the first in vivo measurements of L-Glucose and D-Glucose concentrations using millimeter waves. Employing direct injection of solutions into the rat jugular vein, we have been able to correlate immediate changes in blood glucose readings with transmission loss through the ears of anesthetized rats at Ka band (27-40 GHz). The sensed changing D-glucose levels are shown to track blood values, but with a delay of approximately 10-15 minutes, which may be due to cellular glucose uptake. Surprisingly, levels of L-glucose, the non-bioactive enantiomer (L-isomer) are also tracked by millimeter-wave transmission through the ear, suggesting that we are looking at the direct chemical presence of glucose or products of its breakdown in the tissue, rather than metabolism. Both isomers of glucose are gradually removed from the bloodstream after injection of insulin, consistent with the observed changes in the millimeter-wave absorption. These results represent a major step towards the realization of a non-invasive glucose monitor based on millimeter-wave transceivers.
机译:作者介绍了使用毫米波对L-葡萄糖和D-葡萄糖浓度进行的首次体内测量。通过将溶液直接注入大鼠颈静脉,我们已经能够将血糖读数的即时变化与在Ka波段(27-40 GHz)处通过麻醉大鼠的耳朵的传输损失相关联。显示感测到的变化的D-葡萄糖水平跟踪血液值,但是延迟约10-15分钟,这可能是由于细胞摄取葡萄糖引起的。出人意料的是,毫米波通过耳朵的传播也可以追踪非生物活性对映异构体L-葡萄糖(L-异构体)的水平,这表明我们正在研究葡萄糖在组织中的直接化学存在或其分解产物,而不是新陈代谢。注射胰岛素后,葡萄糖的两种异构体逐渐从血流中清除,这与毫米波吸收率的变化一致。这些结果代表了迈向基于毫米波收发器的无创血糖监测仪迈出的重要一步。

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