Ha Minjeong, Lim Seongdong, Ko Hyunhyub
School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan Metropolitan City 44919, Republic of Korea.
J Mater Chem B. 2018 Jun 28;6(24):4043-4064. doi: 10.1039/c8tb01063c. Epub 2018 Jun 6.
Flexible electronic devices that are lightweight and wearable are critical for personal healthcare systems, which are not restricted by time and space. To monitor human bio-signals in a non-invasive manner, skin-conforming, highly sensitive, reliable, and sustainable healthcare monitoring devices are required. In this review, we introduce flexible and wearable sensors based on engineered functional nano/micro-materials with unique sensing capabilities for detection of physical and electrophysiological vital signs of humans. In addition, we investigate key factors for the development of user-interactive healthcare devices that are customizable, wearable, skin-conforming, and monolithic (design), and have long-term monitoring capability with sustainable power sources. Finally, we describe potential challenges of developing current wearable healthcare devices for applications in fitness, medical diagnosis, prosthetics, and robotics.
轻便且可穿戴的柔性电子设备对于不受时间和空间限制的个人医疗保健系统至关重要。为了以非侵入性方式监测人体生物信号,需要贴合皮肤、高度灵敏、可靠且可持续的医疗监测设备。在本综述中,我们介绍了基于工程功能纳米/微材料的柔性可穿戴传感器,这些材料具有独特的传感能力,可用于检测人体的物理和电生理生命体征。此外,我们研究了开发用户交互式医疗设备的关键因素,这些设备可定制、可穿戴、贴合皮肤且为整体式(设计),并具备利用可持续电源进行长期监测的能力。最后,我们描述了开发当前可穿戴医疗设备在健身、医学诊断、假肢和机器人技术应用中面临的潜在挑战。