Soft, wireless electronic dressing system for wound analysis and biophysical therapy

无线 计算机科学 工程类 电信
作者
Seung Min Yang,Hye Rim Kim,Gwan‐Jin Ko,Jong Chan Choe,Joong Hoon Lee,Kaveti Rajaram,Byoungha An,Won Bae Han,Dong‐Je Kim,Jeong‐Woong Shin,Tae‐Min Jang,Heeseok Kang,Sungkeun Han,Kangwon Lee,Seung Ja Oh,Suk‐Won Hwang
出处
期刊:Nano Today [Elsevier BV]
卷期号:47: 101685-101685 被引量:20
标识
DOI:10.1016/j.nantod.2022.101685
摘要

Advances in wearable technology promise effective strategies to improve the management of patients, particularly systematic wound monitoring tools combined with wireless therapeutic stimulation provide medical and allied health professions with unprecedented insight for inpatients/outpatients beyond traditional nursing environments. Here, we introduce a soft, wireless electronic wound dressing system that can offer both real-time monitoring of wound status, and biophysical therapy for acceleration of wound repairing rates, in a completely integrated form. Synthetic hydrogel-based sensor responds to a biochemical marker (i.e., cathepsin) released from the inflammatory reaction, while electronic sensor arrays collect humidity, pH, and temperature related to the healing process. Miniaturized circuit components serve wireless measurements via Bluetooth interfaces and provide programmed patterns of electrical/optical stimulations that can promote the recovery of damaged tissues. In vivo demonstrations illustrate capabilities of systematic medical care in freely behaving mice, thereby suggesting potential for use in advanced medic-free wound managements. • A soft, wireless electronic wound manager for monitoring and repairing damaged tissues. • Synthetic hydrogel-incorporated biochemical devices that can analyze inflammatory reaction or progression in skin wounds. • Nurse-free monitoring of real-time wound physiologies using electronic sensor arrays. • Active wound treatments via electrotherapy based on experimental and analytical models.

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