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A pacemaker powered by an implantable biofuel cell operating under conditions mimicking the human blood circulatory system - battery not included

机译:由可植入生物燃料电池驱动的起搏器,该生物燃料电池在类似于人体血液循环系统的条件下运行-不包括电池

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摘要

Biocatalytic electrodes made of buckypaper were modified with PQQ-dependent glucose dehydrogenase on the anode and with laccase on the cathode and were assembled in a flow biofuel cell filled with serum solution mimicking the human blood circulatory system. The biofuel cell generated an open circuitry voltage, V_(oc), of ca. 470 mV and a short circuitry current, I-(sc) of ca. 5 mA (a current density of 0.83 mA cm~(-2)). The power generated by the implantable biofuel cell was used to activate a pacemaker connected to the cell via a charge pump and a DC-DC converter interface circuit to adjust the voltage produced by the biofuel cell to the value required by the pacemaker. The voltage-current dependencies were analyzed for the biofuel cell connected to an Ohmic load and to the electronic loads composed of the interface circuit, or the power converter, and the pacemaker to study their operation. The correct pacemaker operation was confirmed using a medical device - an implantable loop recorder. Sustainable operation of the pacemaker was achieved with the system closely mimicking human physiological conditions using a single biofuel cell. This first demonstration of the pacemaker activated by the physiologically produced electrical energy shows promise for future electronic implantable medical devices powered by electricity harvested from the human body.
机译:用布基纸制成的生物催化电极在阳极上用PQQ依赖性葡萄糖脱氢酶修饰,在阴极上用漆酶修饰,然后组装在装有模拟人类血液循环系统血清溶液的流动生物燃料电池中。生物燃料电池产生的开路电压V_(oc)约为。 470 mV,短路电流I-(sc)约为。 5 mA(电流密度为0.83 mA cm〜(-2))。由可植入生物燃料电池产生的功率用于激活通过电荷泵和DC-DC转换器接口电路连接到该电池的起搏器,以将生物燃料电池产生的电压调整为起搏器所需的值。分析了连接至欧姆负载以及由接口电路或电源转换器和起搏器组成的电子负载的生物燃料电池的电压-电流依赖性,以研究其运行情况。使用医疗设备-植入式环路记录仪确认了正确的起搏器操作。起搏器的可持续运行是通过使用单个生物燃料电池紧密模拟人类生理状况的系统实现的。由生理产生的电能激活的起搏器的首次演示显示了未来由人体收集的电能提供动力的可植入电子医疗设备的前景。

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