无线
压力传感器
小型化
可穿戴计算机
电容感应
微加工
无线传感器网络
电光传感器
材料科学
液态金属
计算机科学
流体学
压力测量
电子工程
可扩展性
电气工程
可伸缩电子设备
微电子机械系统
软传感器
嵌入式系统
无线传感器网络中的密钥分配
固定无线
Wi-Fi阵列
可穿戴技术
电极
数据采集
蓝牙
作者
Min-gu Kim,Pyungwoo Yeon,Sara Rachel Arussy Ruth,Jaeho Park,Ying Li,Donglai Zhong,Chengyi Xu,Jayoung Kim,Amin Arbabian,Paige M. Fox,Zhenan Bao
标识
DOI:10.1073/pnas.2528796123
摘要
Innovations in soft materials have advanced the development of implantable devices for pressure monitoring, but fabrication and integration challenges remain, such as limited patterning resolution and poor scalability, hindering their miniaturization and wireless sensing capabilities. This study introduces methods and advantageous features of incorporating liquid metal into microfabriated, wireless soft implantable pressure sensors and wearable readout systems for large-area pressure mapping and adaptive implantation with autonomous folding and self-healing capabilities. Eutectic gallium-indium, a type of liquid metal, serves as both the deformable electrode for capacitive sensors and a low-resistance conductor for inductors. It is integrated into a thin-film, battery-free, inductive-capacitive wireless sensing platform. Scalable wireless sensor arrays are created through microfabrication for large-area pressure mapping. The wireless pressure sensor is also integrated with soft ferromagnetic and self-healing layers in cuff-type sensors to allow for autonomous folding in response to external magnets, eliminating the need for suturing. In addition, a miniaturized wearable readout system integrated into medical gloves enables wireless and real-time pressure monitoring. The presented wireless soft pressure-sensing method with large-area mapping and secure implantation capabilities offers alternatives to conventional medical tools for intraoperative monitoring and examinations.
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