Journal of Polymer & Composites Original Research
Wireless Biosensing Polymer Composites for Smart Healthcare Devices
Abstract
The wireless biosensing polymer composites have been found as one of the possible solutions in developing flexible, real-time and intelligent healthcare monitoring systems. Biomimic polymer matrices coupled with conductive nanomaterials can be used to design an understanding of physiological signals (strain, pressure, and temperature) that are highly sensitive and adaptable sensors. The attachment of these sensors to wireless communication systems, such as the Bluetooth Low Energy and Wi-Fi, eases the flow of data to be used in remote monitoring purposes. The suggested framework combines the material design, sensor fabrication, wireless communication, and machine learning-based analytics into an integrated smart healthcare framework. Experimental analysis reveals the great advancement in the sensitivity, response time and stability of the signal in relation to the traditional sensing systems. Neural networks and other machine learning models are capable of high prediction accuracy in health condition analysis and allow one to detect anomalies early. Edge and cloud computing applications allow real-time response with greater scale and responsiveness of the system. In spite of these developments, they have the problem of energy efficiency, long term reliability as well as data security. The given strategy offers a scalable and effective channel to the next-generation wearable and implantable medical devices to enhance the patient outcomes and ongoing health monitoring.
Keywords
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