Spider-inspired tunable mechanosensor for biomedical applications

Author:

Kim TaewiORCID,Hong InsicORCID,Roh YeonwookORCID,Kim Dongjin,Kim Sungwook,Im Sunghoon,Kim ChanghwanORCID,Jang Kiwon,Kim Seongyeon,Kim Minho,Park Jieun,Gong Dohyeon,Ahn Kihyeon,Lee Jingoo,Lee Gunhee,Lee Hak-Seung,Kang Jeehoon,Hong Ji Man,Lee Seungchul,Seo Sungchul,Koo Bon-KwonORCID,Koh Je-sung,Han SeungyongORCID,Kang DaeshikORCID

Abstract

AbstractThe recent advances of wearable sensors are remarkable but there are still limitations that they need to be refabricated to tune the sensor for target signal. However, biological sensory systems have the inherent potential to adjust their sensitivity according to the external environment, allowing for a broad and enhanced detection. Here, we developed a Tunable, Ultrasensitive, Nature-inspired, Epidermal Sensor (TUNES) that the strain sensitivity was dramatically increased (GF ~30k) and the pressure sensitivity could be tuned (10–254 kPa−1) by preset membrane tension. The sensor adjusts the sensitivity to the pressure regime by preset tension, so it can measure a wide range (0.05 Pa–25 kPa) with the best performance: from very small signals such as minute pulse to relatively large signals such as muscle contraction and respiration. We verified its capabilities as a wearable health monitoring system by clinical trial comparing with pressure wire which is considered the current gold standard of blood pressure (r = 0.96) and home health care system by binary classification of Old’s/Young’s pulse waves via machine learning (accuracy 95%).

Funder

National Research Foundation of Korea

MOE | Korea Environmental Industry and Technology Institute

Korea Institute of Machinery and Materials

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,General Materials Science

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