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Simulatenous Glucose Sensing and Powering of Glucometer

机译:同时葡萄糖感测和关闭血糖仪

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Although recent research has theoretically demonstrated that enzymatic glucose biofuel cell can be used to power a contact lens-based glucose sensor, such a practical system does not exist. Here, we developed a novel closed loop system consisting of a charge pump circuit and a step up DC converter circuit that is powered by a single enzymatic glucose biofuel cell at physiological conditions. This system is capable of simultaneously sensing glucose with a sensitivity of 86.42 Hz/cm~2. M and producing a steady 3.25 V_(DC) output supply to drive low power devices such as commercially available glucometer. Moreover, this system relies on a novel glucose sensing technique which involves the monitoring of the charge/discharge frequency of the transducer capacitor as opposed to the invasive technique currently employed by commercially available glucose monitoring systems that require the implementation of battery-operated potentiostat.
机译:虽然最近的研究理论上证明了酶葡萄糖生物燃料电池可用于为基于隐形眼镜的葡萄糖传感器供电,但这种实用的系统不存在。这里,我们开发了一种由电荷泵电路的新型闭环系统,以及在生理条件下由单个酶葡萄糖生物燃料电池供电的升压DC转换器电路。该系统能够同时感测具有86.42Hz / cm〜2的灵敏度的葡萄糖。 M并产生稳定的3.25V_(DC)输出电源,以驱动低功耗器件,如市售血糖仪。此外,该系统依赖于新颖的血糖感测技术,其涉及监测换能器电容器的充电/放电频率,而不是当前采用的商业上可用的葡萄糖监测系统所采用的侵入性技术,该系统需要实施电池供电的电池电量的恒电容器。

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