Sun Xidi, Guo Xin, Gao Jiansong, Wu Jing, Huang Fengchang, Zhang Jia-Han, Huang Fuhua, Lu Xiao, Shi Yi, Pan Lijia
Collaborative Innovation Center of Advanced Microstructures, School of Electronic Science and Engineering, Nanjing University, Nanjing 210093, China.
School of Electronic Information Engineering, Inner Mongolia University, Hohhot 010021, China.
Biomedicines. 2024 Oct 11;12(10):2307. doi: 10.3390/biomedicines12102307.
E-skin is a bionic device with flexible and intelligent sensing ability that can mimic the touch, temperature, pressure, and other sensing functions of human skin. Because of its flexibility, breathability, biocompatibility, and other characteristics, it is widely used in health management, personalized medicine, disease prevention, and other pan-health fields. With the proposal of new sensing principles, the development of advanced functional materials, the development of microfabrication technology, and the integration of artificial intelligence and algorithms, e-skin has developed rapidly. This paper focuses on the characteristics, fundamentals, new principles, key technologies, and their specific applications in health management, exercise monitoring, emotion and heart monitoring, etc. that advanced e-skin needs to have in the healthcare field. In addition, its significance in infant and child care, elderly care, and assistive devices for the disabled is analyzed. Finally, the current challenges and future directions of the field are discussed. It is expected that this review will generate great interest and inspiration for the development and improvement of novel e-skins and advanced health monitoring systems.
电子皮肤是一种具有灵活且智能传感能力的仿生设备,能够模拟人类皮肤的触觉、温度、压力及其他传感功能。因其具有柔韧性、透气性、生物相容性等特性,它被广泛应用于健康管理、个性化医疗、疾病预防等泛健康领域。随着新传感原理的提出、先进功能材料的发展、微纳制造技术的进步以及人工智能与算法的融合,电子皮肤发展迅速。本文重点关注先进电子皮肤在医疗保健领域所需具备的特性、基本原理、新原理、关键技术及其在健康管理、运动监测、情绪与心脏监测等方面的具体应用。此外,还分析了其在婴幼儿护理、老年护理及残疾人辅助设备中的意义。最后,探讨了该领域当前面临的挑战和未来发展方向。期望这篇综述能为新型电子皮肤和先进健康监测系统的发展与改进引发极大的兴趣并带来启发。