This study developed a hat-shaped device with wearable sensors to estimate scalp moisture content using machine learning, demonstrating that it can provide accurate measurements comparable to professional scalp analyzers without the need for high-cost equipment.
This study introduced a rapid rehydration approach for creating customizable, multifunctional hydrogel sensors, enabling precise detection of surface deformations and easy integration of layers, highlighting its potential for standardized and adaptable manufacturing of wearable devices.
319 citations
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March 2023 in “Science Advances” This study demonstrated that a wearable bioelectronic patch with combined therapy significantly accelerated chronic wound healing in a rodent model by monitoring and treating wounds noninvasively.
13 citations
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January 2025 in “Lab on a Chip” This review discusses recent developments in capillary microfluidic wearables for non-invasive, continuous biofluid monitoring, highlighting advances in device design, electrochemical and optical biosensing, and the challenges of clinical validation and scalable manufacturing.
1 citations
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July 2025 in “Chemosensors” This study developed a closed-loop system for emergency wound care that monitors infection in real-time using biomarkers and delivers amikacin-loaded liposomes for treatment, integrating a conductive hydrogel for environmental protection and antibacterial benefits.