植入式生物燃料电池在体内运行:为生物电子设备提供可持续动力:从生物燃料电池到半机械人

E. Katz
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引用次数: 21

摘要

基于电化学换能器的生物能量采集植入式装置目前受到高度关注。从人体收集的能量可以用来激活各种微电子设备。本文综述了近年来酶基生物燃料细胞在生物组织植入和体内运作方面的研究进展。从生物源中提取的电能用于激活用于生物医学应用的微电子设备。虽然一些微电子设备可以在相当广泛的电气操作条件下工作,但其他微电子设备,如起搏器,需要精确的电压水平和电压调节才能正确操作。因此,某些由可植入能源供电的电子设备不仅需要注意能量和功率方面的考虑,还需要注意电压的缩放和调节。这需要在能量收集装置和能量消耗微电子装置之间进行适当的接口。本文着重分析了现有技术中存在的问题,并提出了可能的解决方案。最后,对植入式生物燃料电池的应用前景进行了展望。所考虑的实例包括起搏器和无线信号传输系统,该系统由从生物源提取电能的可植入生物燃料电池供电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implantable biofuel cells operating in vivo: Providing sustainable power for bioelectronic devices: From biofuel cells to cyborgs
Implantable devices harvesting energy from biological sources and based on electrochemical transducers are currently receiving high attention. The energy collected from the body can be utilized to activate various microelectronic devices. This article is an overview of the recent research activity in the area of enzyme-based biofuel cells implanted in biological tissue and operating in vivo. The electrical power extracted from the biological sources presents use for activating microelectronic devices for biomedical applications. While some microelectronic devices can work within a fairly broad range of electrical operating conditions, others, such as pacemakers, require precise voltage levels and voltage regulation for correct operation. Thus, certain classes of electronic devices powered by implantable energy sources will require careful attention not only to energy and power considerations, but also to voltage scaling and regulation. This requires appropriate interfacing between the energy harvesting device and the energy consuming microelectronic device. The paper focuses on the problems in the present technology as well as offers their potential solutions. Lastly, perspectives and future applications of the implanted biofuel cells are also discussed. The considered examples include a pacemaker and a wireless signal transfer system powered by implantable biofuel cell extracting electrical energy from biological sources.
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