Ershad Faheem, Patel Shubham, Yu Cunjiang
Department of Biomedical Engineering, Pennsylvania State University, University Park, PA 16801 USA.
Department of Engineering Science and Mechanics, Pennsylvania State University, University Park, PA 16801 USA.
Npj Flex Electron. 2023;7(1):32. doi: 10.1038/s41528-023-00265-0. Epub 2023 Jul 17.
In recent years, wearable bioelectronics has rapidly expanded for diagnosing, monitoring, and treating various pathological conditions from the skin surface. Although the devices are typically prefabricated as soft patches for general usage, there is a growing need for devices that are customized in situ to provide accurate data and precise treatment. In this perspective, the state-of-the-art in situ fabricated wearable bioelectronics are summarized, focusing primarily on Drawn-on-Skin (DoS) bioelectronics and other in situ fabrication methods. The advantages and limitations of these technologies are evaluated and potential future directions are suggested for the widespread adoption of these technologies in everyday life.
近年来,可穿戴生物电子设备已迅速扩展,用于从皮肤表面诊断、监测和治疗各种病理状况。尽管这些设备通常预先制作为通用的软贴片,但对原位定制以提供准确数据和精确治疗的设备的需求日益增长。从这个角度出发,总结了最先进的原位制造可穿戴生物电子设备,主要侧重于皮肤绘制(DoS)生物电子学和其他原位制造方法。评估了这些技术的优点和局限性,并为这些技术在日常生活中的广泛应用提出了潜在的未来发展方向。