轮椅
持续监测
压力传感器
无线
皮肤电导
原电池
皮肤温度
缓冲垫
坐
计算机科学
人口
电池(电)
模拟
功率(物理)
嵌入式系统
工程类
生物医学工程
材料科学
机械工程
电信
医学
冶金
病理
量子力学
万维网
物理
环境卫生
运营管理
作者
Seokjoo Cho,Hyeonseok Han,Hyunwoo Park,Sung‐Uk Lee,Jae-Hwan Kim,Sung Woo Jeon,Mengqiu Wang,Raudel Avila,Zhaoqian Xi,Kabseok Ko,Minsu Park,Jungyup Lee,Myungwoo Choi,Je‐Sang Lee,Weon Gi Min,Byeong‐Ju Lee,Soyeong Lee,Jungrak Choi,Jimin Gu,Jaeho Park
标识
DOI:10.1038/s41528-023-00238-3
摘要
Abstract Individuals who are unable to walk independently spend most of the day in a wheelchair. This population is at high risk for developing pressure injuries caused by sitting. However, early diagnosis and prevention of these injuries still remain challenging. Herein, we introduce battery-free, wireless, multimodal sensors and a movable system for continuous measurement of pressure, temperature, and hydration at skin interfaces. The device design includes a crack-activated pressure sensor with nanoscale encapsulations for enhanced sensitivity, a temperature sensor for measuring skin temperature, and a galvanic skin response sensor for measuring skin hydration levels. The movable system enables power harvesting, and data communication to multiple wireless devices mounted at skin-cushion interfaces of wheelchair users over full body coverage. Experimental evaluations and numerical simulations of the devices, together with clinical trials for wheelchair patients, demonstrate the feasibility and stability of the sensor system for preventing pressure injuries caused by sitting.
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