Embedded process for flexible conductive electrodes for applications in tissue electrical impedance scanning (EIS)

Limerick(2011)

引用 4|浏览7
暂无评分
摘要
We present the fabrication and testing of micro-patternable flexible conductive nanoparticle composite polymer (C-NCP) electrode arrays for electrical impedance scanning (EIS). We attempt to minimize EIS issues of mechanical skin contact and resolution through the use of highly compliant micropatternable elastomeric C-NCPs. We anticipate an increase in spatial resolution as the electrodes can be patterned into high density arrays using a new multi-level process presented here for the first time. We characterize the conductivity of the electrodes (average resistivity of 2.98×10-4 ohm-m +/- 8.3% at 60 wt-% of silver nanoparticles), compare the baseline impedance map with a new circuit phantom, and demonstrate anomaly detection in a gelatin tissue phantom using highly flexible Ag/AgCl C-NCP electrodes.
更多
查看译文
关键词
biological tissues,biomedical electrodes,composite materials,electric impedance imaging,gelatin,nanoparticles,phantoms,c-ncp electrodes,eis,circuit phantom,conductive nanoparticle composite polymer,electrical impedance scanning,embedded process,flexible conductive electrode array,gelatin tissue phantom,mechanical skin contact,micropatternable elastomeric,multilevel process,spatial resolution,polymers,conductivity,electrodes,impedance,anomaly detection,silver nanoparticle,electrical impedance,impedance measurement
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要