可穿戴计算机
可穿戴技术
纳米技术
系统工程
可扩展性
转化式学习
钥匙(锁)
桥(图论)
智能决策支持系统
适应(眼睛)
人机交互
新兴技术
无线
无线传感器网络
智能传感器
结构健康监测
数据科学
系统集成
医疗保健
物联网
工业4.0
医疗保健系统
比例(比率)
数码产品
大数据
灵活性(工程)
风险分析(工程)
计算机科学
作者
Shiqi Song,Miaomiao Zhang,Xiaobao Gong,Shuo Shi,Jian Fang,Xungai Wang
标识
DOI:10.1002/adfm.202518767
摘要
Abstract Flexible wearable sensors have emerged as a transformative technology in health monitoring, offering significant potential for personalized healthcare management. While previous studies have focused on specific aspects such as sensing mechanisms and materials, comprehensive reviews that address interdisciplinary design, system integration, and AI applications remain limited. This review systematically examines electronic skin technologies, covering the full spectrum from fundamental materials to integrated systems. Key topics include sensing mechanisms, flexible substrates, and functional materials, as well as structural strategies to enhance reliability, such as microscopic patterning and surface bonding. Practical integration is discussed in terms of wearer comfort, sustainable power solutions, wireless communication, and intelligent data processing. Despite rapid advancements, wearable sensors still face major challenges in durability, user comfort, and scalable manufacturing, which hinder their transition from laboratory prototypes to commercial products. This review highlights emerging solutions in materials, device design, and production processes that aim to bridge these gaps. By identifying current technical limitations and proposing innovative strategies, this work provides valuable insights into the development of next‐generation health monitoring systems with multifunctional sensing, adaptive designs, and intelligent diagnostics suitable for real‐world applications.
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