小型化
无线
平面的
共形映射
无线电源传输
电气工程
计算机科学
工程类
电信
数学
计算机图形学(图像)
数学分析
作者
Devansh R. Agrawal,Yuji Tanabe,Desen Weng,Andrew Ma,Stephanie Hsu,Song-Yan Liao,Zhe Zhen,Ziyi Zhu,Chuanbowen Sun,Zhenya Dong,Fengyuan Yang,Hung‐Fat Tse,Ada S. Y. Poon,John S. Ho
标识
DOI:10.1038/s41551-017-0043
摘要
Wireless powering could enable the long-term operation of advanced bioelectronic devices within the human body. Although both enhanced powering depth and device miniaturization can be achieved by shaping the field pattern within the body, existing electromagnetic structures do not provide the spatial phase control required to synthesize such patterns. Here, we describe the design and operation of conformal electromagnetic structures, termed phased surfaces, that interface with non-planar body surfaces and optimally modulate the phase response to enhance the performance of wireless powering. We demonstrate that the phased surfaces can wirelessly transfer energy across anatomically heterogeneous tissues in large animal models, powering miniaturized semiconductor devices (<12 mm3) deep within the body (>4 cm). As an illustration of in vivo operation, we wirelessly regulated cardiac rhythm by powering miniaturized stimulators at multiple endocardial sites in a porcine animal model.
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