可穿戴计算机
可扩展性
计算机科学
热电偶
过程(计算)
生物电子学
灵敏度(控制系统)
电子工程
材料科学
纳米技术
嵌入式系统
生物传感器
工程类
数据库
复合材料
操作系统
作者
J D Liu,Zhongzheng Li,Mubai Sun,Lianjie Zhou,Xiaojun Wu,Yifei Lü,Yuting Shao,Chang Liu,Ningge Huang,Bofan Hu,Zhongyuan Wu,Chunyu You,Lizhu Li,Ming Wang,Ling Tao,Zengfeng Di,Xing Sheng,Yongfeng Mei,Enming Song
标识
DOI:10.1073/pnas.2412423121
摘要
Continuous monitoring and closed-loop therapy of soft wound tissues is of particular interest in biomedical research and clinical practices. An important focus is on the development of implantable bioelectronics that can measure time-dependent temperature distribution related to localized inflammation over large areas of wound and offer in situ treatment. Existing approaches such as thermometers/thermocouples provide limited spatial resolution, inapplicable to a wearable/implantable format. Here, we report a conformal, scalable device package that integrates a flexible amorphous silicon–based temperature sensor array and drug-loaded hydrogel for the healing process. This system can enable the spatial temperature mapping at submillimeter resolution and high sensitivity of 0.1 °C, for dynamically localizing the inflammation regions associated with temperature change, automatically followed with heat-triggered drug delivery from hydrogel triggered by wearable infrared light-emitting-diodes. We establish the operational principles experimentally and computationally and evaluate system functionalities with a wide range of targets including live animal models and human subjects. As an example of medical utility, this system can yield closed-loop monitoring/treatments by tracking of temperature distribution over wound areas of live rats, in designs that can be integrated with automated wireless control. These findings create broad utilities of these platforms for clinical diagnosis and advanced therapy for wound healthcare.
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