Advances of materials science in MEMS applications: A review
Достижения материаловедения в применении МЭМС: обзор
2024-04-10
SCID: 54.1/xtg4g59n
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MEMS biosensorsbiocompatibilitylabel-free detectionmaterials sciencewireless monitoring
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Abstract (AI)
MEMS, or microelectromechanical systems, have greatly transformed multiple industries with their small size and adaptable capabilities. MEMS technology in biosensing allows for rapid and accurate identification of biological analytes, assisting in medical diagnoses and therapies. MEMS-based biosensors provide label-free detection, improving early disease screening and customized medicine administration. MEMS devices in healthcare enable uninterrupted patient monitoring and telemedicine, leading to substantial enhancements in healthcare results. Nevertheless, obstacles remain, such as the requirement for improved biocompatibility and durability under very demanding conditions. In order to overcome these restrictions, current research is dedicated to advancing materials that are compatible with living organisms, improving processes used to create small-scale structures, and incorporating wireless monitoring systems. To fully exploit the capabilities of MEMS biosensors, it is crucial to prioritize these improvements. This will facilitate their smooth integration into different industries and contribute to the industry's significant growth.
Key Findings
1
Current research prioritizes biocompatible materials, improved microscale fabrication processes, and wireless monitoring integration to expand MEMS biosensor adoption.
2
Healthcare MEMS devices facilitate continuous patient monitoring and telemedicine, improving healthcare outcomes.
3
Key challenges include insufficient biocompatibility and durability under demanding operating conditions.
4
MEMS technology has transformed multiple industries through miniaturized devices with adaptable capabilities.
5
MEMS-based biosensors enable rapid, accurate, and label-free detection of biological analytes, supporting early disease screening and personalized therapy.
Research Object
MEMS-based biosensors and healthcare devices
Research Subject
Materials science advances addressing the biocompatibility, durability, fabrication, and wireless-monitoring capabilities of MEMS devices
Publication Details
Publication Date
2024-04-10
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