Silk Fibroin Hydrogel for Pulse Waveform Precise and Continuous Perception

丝素 材料科学 波形 生物医学工程 丝绸 脉搏(音乐) 计算机科学 复合材料 工程类 电信 探测器 雷达
作者
Yingmei Yan,Weijun Deng,Du Xie,Jing Hu
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:14 (4): e2403637-e2403637 被引量:13
标识
DOI:10.1002/adhm.202403637
摘要

Precise and continuous monitoring of blood pressure and cardiac function is of great importance for early diagnosis and timely treatment of cardiovascular diseases. The common tests rely on on-site diagnosis and bulky equipments, hindering early diagnosis. The emerging hydrogels have gained considerable attention in skin bioelectronics by virtue of the similarities to biological tissues and versatility in mechanical, electrical, and biofunctional engineering. However, hydrogels should overcome intrinsic issues such as poor mechanical strength, easy dehydration and freezing, weak adhesiveness and self-recovery, severely limiting their precision and reliability in practical applications. Here, silk fibroin hydrogels are developed as resistive sensors for pulse waveform monitoring. The silk fibroin hydrogel is simultaneously transparent, extremely stretchable, extra tough, adhesive, printable, and environmentally endurable. The silk fibroin hydrogel is also conductive with high sensitivity, short self-healing time, highly repeatable and reliable response, meeting the requirements for wearable sensors for continuous monitoring. The sensors with silk fibroin hydrogel present high-quality and stable waveforms of radical and brachial pulses with high precision and rich features, providing physiological signals of blood pressure and cardiac function. The sensors are promising for personalized health management, daily monitoring and timely diagnosis.
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