Supervisor of Master's Candidates
E-Mail:85ef362b5fd027a87b7915f9b7ce71c83544532dd884c13c91f87bce9468949f3fbcecb59d6ca94b1d710cc86cd28edbd2e4e05ea80b75272d0eec04baead06dbfc811bb94274e3f441fd6c1a9d42e4f214343eddfdfd7d44fbd3e117433ee12d718fc23eebc550e551a37bad757106fedb0965bd5b4e14991d2fdb96021463c
Paper Publications
基于建构主义的“环境监测”课程教学改革
Key Words:
Abstract:Meningitis is a critical condition, particularly prevalent among young children, necessitating prompt diagnosis and intervention to prevent severe complications and mortality. This study presents the design and application of Janus-adhesive ionogels for real-time monitoring of physiological parameters with a focus on the early detection and management of infantile meningitis. The ionogel features a dual-layer structure, with an inner adhesive layer that strongly adheres to the skin and an outer anti-adhesive layer that minimizes external interference, ensuring accurate and reliable monitoring. These ionogels demonstrate superior properties such as high tensile strength, breathability, anti-freezing capabilities, and excellent ionic conductivity, making them ideal for continuous, long-term monitoring. The integrated monitoring system effectively tracks joint activity, body temperature, and ECG signals, providing real-time data critical for early warning and intervention in meningitis cases. This research represents a significant advancement in the field of wearable health monitoring technologies, showcasing the potential of Janus-adhesive ionogels to enhance the performance of wearable devices and contribute to personalized medicine.
Volume:499
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Translation or Not:no
Pre One:粉末渗锌工艺及应用发展趋势