Wearable sensors: modalities, challenges, and prospects
Носимые сенсоры: модальности, проблемы и перспективы
2017-11-28
SCID: 54.1/bn6c33t5
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chemical sensing modalitiesminiaturization and conformal flexible sensorsnon-invasive chemical sensorssensor specificity of detectionwearable sensors
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Abstract (AI)
Wearable sensors have recently seen a large increase in both research and commercialization. However, success in wearable sensors has been a mix of both progress and setbacks. Most of commercial progress has been in smart adaptation of existing mechanical, electrical and optical methods of measuring the body. This adaptation has involved innovations in how to miniaturize sensing technologies, how to make them conformal and flexible, and in the development of companion software that increases the value of the measured data. However, chemical sensing modalities have experienced greater challenges in commercial adoption, especially for non-invasive chemical sensors. There have also been significant challenges in making significant fundamental improvements to existing mechanical, electrical, and optical sensing modalities, especially in improving their specificity of detection. Many of these challenges can be understood by appreciating the body's surface (skin) as more of an information barrier than as an information source. With a deeper understanding of the fundamental challenges faced for wearable sensors and of the state-of-the-art for wearable sensor technology, the roadmap becomes clearer for creating the next generation of innovations and breakthroughs.
Key Findings
1
A deeper understanding of these fundamental challenges and current state-of-the-art technologies clarifies the roadmap for next-generation wearable sensor innovations.
2
Chemical sensing modalities, particularly non-invasive chemical sensors, face greater challenges in commercial adoption compared to mechanical, electrical, and optical sensors.
3
Commercial progress in wearable sensors mainly comes from adapting existing mechanical, electrical, and optical measurement methods through miniaturization, conformal/flexible designs, and companion software.
4
Fundamental improvements to existing mechanical, electrical, and optical modalities—especially in improving specificity of detection—have been difficult to achieve.
5
The skin often acts as an information barrier rather than a straightforward information source, creating significant challenges for wearable sensing.
Research Object
Wearable sensors
Research Subject
Modalities, challenges, and prospects of wearable sensors, including mechanical, electrical, optical and chemical sensing modalities, miniaturization, conformability/flexibility, specificity of detection, and barriers posed by the skin
Publication Details
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2017-11-28
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