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Unobtrusive Sensing and Wearable Devices for Health Informatics

IEEE Transactions on Biomedical Engineering · 2014 · Vol. 61(5) · pp. 1538–1554
Yali ZhengXiaorong DingCarmen C. Y. PoonBenny LoHeye ZhangXiao-Lin ZhouGuang‐Zhong YangNi ZhaoYuan‐Ting Zhang

Abstract

The aging population, prevalence of chronic diseases, and outbreaks of infectious diseases are some of the major challenges of our present-day society. To address these unmet healthcare needs, especially for the early prediction and treatment of major diseases, health informatics, which deals with the acquisition, transmission, processing, storage, retrieval, and use of health information, has emerged as an active area of interdisciplinary research. In particular, acquisition of health-related information by unobtrusive sensing and wearable technologies is considered as a cornerstone in health informatics. Sensors can be weaved or integrated into clothing, accessories, and the living environment, such that health information can be acquired seamlessly and pervasively in daily living. Sensors can even be designed as stick-on electronic tattoos or directly printed onto human skin to enable long-term health monitoring. This paper aims to provide an overview of four emerging unobtrusive and wearable technologies, which are essential to the realization of pervasive health information acquisition, including: (1) unobtrusive sensing methods, (2) smart textile technology, (3) flexible-stretchable-printable electronics, and (4) sensor fusion, and then to identify some future directions of research.

Advanced Sensor and Energy Harvesting MaterialsContext-Aware Activity Recognition SystemsNon-Invasive Vital Sign MonitoringWearable computerInformaticsWearable technologyHealth informaticsComputer scienceHealth careClothingCornerstoneHealth Administration InformaticsSensor fusion

MeSH terms

Biomedical EngineeringClothingHumansMedical InformaticsMonitoring, AmbulatoryRemote Sensing Technology

Funding

  • National Natural Science Foundation of China
  • Chinese Academy of Sciences
  • Engineering and Physical Sciences Research Council
  • National Key Research and Development Program of China
Citations
719
FWCI
46.05
field-weighted impact
References
164
Percentile
100%
vs. same field & year
Citations per year
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