可穿戴技术
计算机科学
可穿戴计算机
纳米技术
数码产品
执行机构
材料科学
基质(水族馆)
嵌入式系统
人机交互
电气工程
人工智能
工程类
海洋学
地质学
作者
Donghee Son,Jongha Lee,Shutao Qiao,Roozbeh Ghaffari,Jaemin Kim,Ji Eun Lee,Changyeong Song,Seok Joo Kim,Dong Jun Lee,Samuel Woojoo Jun,Shixuan Yang,Minjoon Park,Jiho Shin,Kyungsik Do,Min‐Cheol Lee,Kwanghun Kang,Cheol Seong Hwang,Nanshu Lu,Taeghwan Hyeon,Dae‐Hyeong Kim
标识
DOI:10.1038/nnano.2014.38
摘要
Wearable systems that monitor muscle activity, store data and deliver feedback therapy are the next frontier in personalized medicine and healthcare. However, technical challenges, such as the fabrication of high-performance, energy-efficient sensors and memory modules that are in intimate mechanical contact with soft tissues, in conjunction with controlled delivery of therapeutic agents, limit the wide-scale adoption of such systems. Here, we describe materials, mechanics and designs for multifunctional, wearable-on-the-skin systems that address these challenges via monolithic integration of nanomembranes fabricated with a top-down approach, nanoparticles assembled by bottom-up methods, and stretchable electronics on a tissue-like polymeric substrate. Representative examples of such systems include physiological sensors, non-volatile memory and drug-release actuators. Quantitative analyses of the electronics, mechanics, heat-transfer and drug-diffusion characteristics validate the operation of individual components, thereby enabling system-level multifunctionalities.
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