20222022 IEEE 35th International Conference on Micro Electro Mechanical Systems Conference (MEMS)Requires access

A Wireless Flexible Smart Bandage For Wound Monitoring

Wen Lv, Xiyu Chen, Yong‐Wei Zhang, Wenjing Quan, Xinwei Chen, Chao Fan, Jia Shi, Jianhua Yang, Min Zeng, Zhi Yang

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Abstract

A low-cost wireless flexible smart bandage with simple structure for wound monitoring has been developed in this work. The smart bandage was composed of a commercial bandage and a wireless temperature sensor fabricated by facile process on flexible substrate. The smart bandage showed a favorable performance under different mechanical deformations and a maximum coupling distance of 12 mm. The bandage yielded a sensitivity of up to 0.818 MHz/°C in 20–42 °C with a response and recovery time of 24.2 and 28.2 s and with a resolution of 0.5 °C, showing a great promise of the smart bandage as a fast and accurate temperature monitor in wound healing.

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What this paper is about

A low-cost wireless flexible smart bandage with simple structure for wound monitoring has been developed in this work. The smart bandage was composed of a commercial bandage and a wireless temperature sensor fabricated by facile process on flexible substrate. The smart bandage showed a favorable performance under different mechanical deformations and a maximum coupling distance of 12 mm. The bandage yielded a sensitivity of up to 0.818 MHz/°C in 20–42 °C with a response and recovery time of 24.2 and 28.2 s and with a resolution of 0.5 °C, showing a great promise of the smart bandage as a fast and accurate temperature monitor in wound healing.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A low-cost wireless flexible smart bandage with simple structure for wound monitoring has been developed in this work. The smart bandage was composed of a commercial bandage and a wireless temperature sensor fabricated by facile process on flexible substrate. The smart bandage showed a favorable performance under different mechanical deformations and a maximum coupling distance of 12 mm. The bandage yielded a sensitivity of up to 0.818 MHz/°C in 20–42 °C with a response and recovery time of 24.2 and 28.2 s and with a resolution of 0.5 °C, showing a great promise of the smart bandage as a fast and accurate temperature monitor in wound healing.

Key concepts: Bandage, Wireless, Materials science, Biomedical engineering, Computer science, Surgery, Engineering, Medicine

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