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文献详情 >面向个性化健康管理的柔性自供能生物诊疗电子器件 收藏

面向个性化健康管理的柔性自供能生物诊疗电子器件

Flexible self-powered bioelectronics enables personalized health management from diagnosis to therapy

作     者:姚光 甘兴羿 林媛 Guang Yao;Xingyi Gan;Yuan Lin

作者机构:School of Materials and EnergyUniversity of Electronic Science and Technology of ChinaChengdu 610054China State Key Laboratory of Electronic Thin Films and Integrated DevicesUniversity of Electronic Science and Technology of ChinaChengdu 610054China Shenzhen Institute for Advanced StudyUniversity of Electronic Science and Technology of ChinaShenzhen 518110China Medico-Engineering Cooperation on Applied Medicine Research CenterUniversity of Electronic Science and Technology of ChinaChengdu 610054China 

出 版 物:《Science Bulletin》 (科学通报(英文版))

年 卷 期:2024年第69卷第14期

页      面:2289-2306页

核心收录:

学科分类:08[工学] 081101[工学-控制理论与控制工程] 0811[工学-控制科学与工程] 081102[工学-检测技术与自动化装置] 

基  金:supported by the National Natural Science Foundation of China(62371115,U21A20460,and 52021001) the Science and Technology Major Project of Xizang Zizhiqu of China(XZ202201ZD0001G) the Science and Technology Department of Sichuan Province(24NSFSC1553) the Medico-Engineering Cooperation Funds Fundamental Research Funds for the Central Universities,UESTC(ZYGX2021YGLH002) 

主  题:Flexible bioelectronics Self-powered Sensing diagnosis Intervention therapy Health management 

摘      要:Flexible self-powered bioelectronics(FSPBs),incorporating flexible electronic features in biomedical applications,have revolutionized the human–machine interface since they hold the potential to offer natural and seamless human interactions while overcoming the limitations of battery-dependent power ***,as biosensors or actuators,FSPBs can dynamically monitor physiological signals to reveal real-time health abnormalities and provide timely and precise ***,FSPBs are increasingly shaping the landscape of health monitoring and disease treatment,weaving a sophisticated and personalized bond between humans and health ***,we examine the recent advanced progress of FSPBs in developing working mechanisms,design strategies,and structural configurations toward personalized health management,emphasizing its role in clinical medical scenarios from biophysical/biochemical sensors for sensing diagnosis to robust/biodegradable actuators for intervention *** perspectives on the challenges and opportunities in emerging multifunctional FSPBs for the next-generation health management systems are also forecasted.

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