共形矩阵
计算机科学
体内
比例(比率)
织物
材料科学
人机交互
人工智能
生物
地理
地图学
生物技术
复合材料
作者
Irmandy Wicaksono,Carson Tucker,Tao Sun,C. Guerrero,Clare Liu,Wesley M. Woo,Eric J. Pence,Canan Dağdeviren
标识
DOI:10.1038/s41528-020-0068-y
摘要
The rapid advancement of electronic devices and fabrication technologies has further promoted the field of wearables and smart textiles. However, most of the current efforts in textile electronics focus on a single modality and cover a small area. Here, we have developed a tailored, electronic textile conformable suit (E-TeCS) to perform large-scale, multimodal physiological (temperature, heart rate, and respiration) sensing in vivo. This platform can be customized for various forms, sizes and functions using standard, accessible and high-throughput textile manufacturing and garment patterning techniques. Similar to a compression shirt, the soft and stretchable nature of the tailored E-TeCS allows intimate contact between electronics and the skin with a pressure value of around ~25 mmHg, allowing for physical comfort and improved precision of sensor readings on skin. The E-TeCS can detect skin temperature with an accuracy of 0.1 °C and a precision of 0.01 °C, as well as heart rate and respiration with a precision of 0.0012 m/s
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