Research on Biosensor Technology in Wearable Health Monitoring Equipment
DOI:
https://doi.org/10.54097/jsmr3p86Keywords:
Biosensor, health-monitoring, wearable devices.Abstract
In recent years, innovative and well-researched smart devices utilizing wearable biosensor systems for health monitoring have attracted much attention from society. These health monitoring devices, equipped with various transmission modules and miniature physiological sensors, are anticipated to alleviate the escalating healthcare expenses in the post-pandemic era by offering real-time, precise physiological information and persistent health status monitoring. Additionally, such health monitoring devices can provide tailored health advice and preventive measures for healthcare providers, potentially transforming the future of healthcare. Hence, their impact spans a broad and enduring spectrum in our daily lives. This paper aims to provide a comprehensive review of current technologies used for health monitoring and current trends, developments, and research in wearable biosensor systems for health monitoring. The focus is especially on the technical design of multiparameter physiological sensing systems and the challenges they face. Also, it discusses the ethical and data protection issues associated with these wearable biosensor systems. Finally, future research directions and perspectives on wearable biosensor devices are analyzed. Moreover, this paper serves as a resource for researchers and developers in this field, providing directions for future research advancements.
Downloads
References
Bloom DE, Cafiero ET, Jané-Llopis E et al. The global economic burden of noncommunicable diseases. Geneva: World Economic Forum, 2011.
Liu, J.; Liu, M.; Chai, Z.; Li, C.; Wang, Y.; Shen, M.; Zhuang, G.; Zhang, L. Projected rapid growth in diabetes disease burden and economic burden in China: A spatio-temporal study from 2020 to 2030. Lancet Reg. Health–West. Pac. 2023,33, 100700.
Kathirvel, Natarajan (2020). Post COVID-19 pandemic mental health challenges. Asian Journal of Psychiatry.
Anwar A, HvderS, Mohamed Nor N, Younis M. Government health expenditures and health outcome nexus: a study on OECD countries. Frontiers in Public Health. 2023:11:1123759.
Yang, B.; Jiang, X.; Fang, X.; Kong, J. Wearable Chem-Biosensing Devices: From Basic Research To Commercial Market.
Yoon, S. N., Lee, D. H., & Shin, Y. (2020). Innovative Healthcare Wearable Device Usage and Service Enhancement. Global Business & Finance Review 25 (2): 1-10.
Xue, Junwei; Huang, Yueshan; Du, Xin; Wu, Xiuyong; Wu, Kai; Zeng, Weijie; Xi, Yusheng; Chen, Yimin; Zhao, Yu (2015). [IEEE 2015 IEEE 12th Intl Conf on Ubiquitous Intelligence and Computing and 2015 IEEE 12th Intl Conf on Autonomic and Trusted Computing and 2015 IEEE 15th Intl Conf on Scalable Computing and Communications and Its Associated Workshops (UIC-ATC-ScalCom) - Beijing, China (2015.8.10-2015.8.14)] 2015 IEEE 12th Intl Conf on Ubiquitous Intelligence and Computing and 2015 IEEE 12th Intl Conf on Autonomic and Trusted Computing and 2015 IEEE 15th Intl Conf on Scalable Computing and Communications and Its Associated Workshops (UIC-ATC-ScalCom) - Design of a Wearable Device for Monitoring SpO2 Continuously.
Ariyatum, B.; Holland, R.; Harrison, D.; Kazi, T. (2005). The future design direction of Smart Clothing development.
Berglund, Mary Ellen; Duvall, Julia; Dunne, Lucy E (2016). [ACM Press the 2016 ACM International Symposium - Heidelberg, Germany (2016.09.12-2016.09.16)] Proceedings of the 2016 ACM International Symposium on Wearable Computers - ISWC '16 - A survey of the historical scope and current trends of wearable technology applications.
Chang, V., Le Minh T. D., Qianwen A. X., Hall K., Yuanyuan A. W. and Muhammad M. K. (2023). “Digitalization in omnichannel healthcare supply chain businesses: The role of smart wearable devices”,Journal of Business Research.
Francés-Morcillo, L.; Morer-Camo, P.; Rodríguez-Ferradas, M.I.; Cazón-Martín, A. Wearable Design Requirements Identification and Evaluation.
Sun H, Zhang Z, Hu R, Qian Y. Wearable communications in 5G: challenges and enabling technologies. IEEE Veh Technol Mag 2018 Sep.
Fan, Songchun; Llull, Qiuyun; Lee, Benjamin C. (2017). [ACM Press the 18th International Workshop - Sonoma, CA, USA (2017.02.21-2017.02.22)] Proceedings of the 18th International Workshop on Mobile Computing Systems and Applications - HotMobile '17 - Predicting Sensory Data and Extending Battery Life for Wearable Devices.
Sun, H.; Zhang, Z.; Hu, R.Q.; Qian, Y. Wearable Communications in 5G: Challenges and Enabling Technologies. IEEE Veh. Technol. Mag.2018.
Liang, Yeru; Zhao, Chen‐Zi; Yuan, Hong; Chen, Yuan; Zhang, Weicai; Huang, Jia‐Qi; Yu, Dingshan; Liu, Yingliang; Titirici, Maria‐Magdalena; Chueh, Yu‐Lun; Yu, Haijun; Zhang, Qiang (2019). A review of rechargeable batteries for portable electronic devices.
El-Amrawy, Fatema; Nounou, Mohamed Ismail (2015). Are Currently Available Wearable Devices for Activity Tracking and Heart Rate Monitoring Accurate, Precise, and Medically Beneficial?
H. Scott, L. Lack and N. Lovato, "A systematic review of the accuracy of sleep wearable devices for estimating sleep onset" in Sleep Med. Rev., vol. 49, Feb. 2020.
Dooley EE, Golaszewski NM, Bartholomew JB. Estimating Accuracy at Exercise Intensities: A Comparative Study of Self-Monitoring Heart Rate and Physical Activity Wearable Devices. JMIR Mhealth Uhealth 2017 Mar 16.
Segura Anaya, L.H.; Alsadoon, Abeer;Costadopoulos, N.; Prasad, P W. C.(2017). Ethical lmplications of UserPerceptions of Wearable Devices.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







