Biosensors and Wearables: Monitoring Health in Real-Time
DOI:
https://doi.org/10.55938/wlp.v1i1.95Keywords:
Bio-Recognition, Sensors, Smart Wearable Sensors, Point-Of-Care Testing (POCT), Point-Of-Care (POC), Biofluids, BiosensorAbstract
Biosensors provide an efficient and cost-effective alternative for researchers and medical practitioners to carry out examination, safeguard public safety, and present tailored health care options. They play an increasingly essential role in biological research, infectious disease screening, chronic illness treatment, health management, and well-being monitoring. Improved biosensor technology facilitates for early illness identification and observation of the body's reaction to medication, making it a vital component of contemporary medical equipment. Wearable biosensors provide real-time physiological information through the dynamic measurements of biochemical markers in biofluids including sweat, tears, saliva, and interstitial fluid. Additional biomarkers will demand more on-body bioaffinity testing and sensing techniques. Large-scale verification experiments have to be performed for clinical acceptability. Accurate, dependable biosensor technology could potentially have significant effects on everyday life. Wearable health sensors determine the wearer's health and environment in real time by transmitting data to a control unit via biological responses. This article explores the creation, technology, business, ethics, and future of wearable biosensors in healthcare, with an emphasis on their application in a multitude of scenarios along with potential implementations. The study investigates the utilization of biosensors in medicine, particularly in cardiovascular disorders, emphasizing their potential for breakthrough medicines, real-time insights, tailored solutions, and informed advice, paving the way for a bright future in healthcare.
References
Bhatia, D., Paul, S., Acharjee, T., & Ramachairy, S. S. (2024). Biosensors and their widespread impact on human health. Sensors International, 5, 100257.
Yokus, M. A., & Daniele, M. A. (2021). Integrated non-invasive biochemical and biophysical sensing systems for health and performance monitoring: A systems perspective. Biosensors and Bioelectronics, 184, 113249.
Kim, J., Campbell, A. S., de Ávila, B. E. F., & Wang, J. (2019). Wearable biosensors for healthcare monitoring. Nature biotechnology, 37(4), 389-406.
Arakawa, T., Dao, D. V., & Mitsubayashi, K. (2022). Biosensors and chemical sensors for healthcare monitoring: a review. IEEJ Transactions on Electrical and Electronic Engineering, 17(5), 626-636.
Erdem, A., Eksin, E., Senturk, H., Yildiz, E., & Maral, M. (2023). Recent developments in wearable biosensors for healthcare and biomedical applications. TrAC Trends in Analytical Chemistry, 117510.
Nasiri, S., & Khosravani, M. R. (2020). Progress and challenges in fabrication of wearable sensors for health monitoring. Sensors and Actuators A: Physical, 312, 112105.
Tyler, J., Choi, S. W., & Tewari, M. (2020). Real-time, personalized medicine through wearable sensors and dynamic predictive modeling: a new paradigm for clinical medicine. Current opinion in systems biology, 20, 17-25.
Luo, H., & Gao, B. (2021). Development of smart wearable sensors for life healthcare. Engineered Regeneration, 2, 163-170.
Paganelli, A. I., Mondéjar, A. G., da Silva, A. C., Silva-Calpa, G., Teixeira, M. F., Carvalho, F., ... & Endler, M. (2022). Real-time data analysis in health monitoring systems: A comprehensive systematic literature review. Journal of Biomedical Informatics, 127, 104009.
Zhu, P., Peng, H., & Rwei, A. Y. (2022). Flexible, wearable biosensors for digital health. Medicine in Novel Technology and Devices, 14, 100118.
dos Santos, C. C., Lucena, G. N., Pinto, G. C., Júnior, M. J., & Marques, R. F. (2021). Advances and current challenges in non‐invasive wearable sensors and wearable biosensors—A mini‐review. Medical Devices & Sensors, 4(1), e10130.
Tu, J., Torrente‐Rodríguez, R. M., Wang, M., & Gao, W. (2020). The era of digital health: A review of portable and wearable affinity biosensors. Advanced Functional Materials, 30(29), 1906713.
Jakhar, P., Rajagopalan, P., Shukla, M., & Singh, V. (2022). Wearable Devices for Real-time Disease Monitoring in Healthcare. In Nanosensors for Futuristic Smart and Intelligent Healthcare Systems (pp. 54-79). CRC Press.
Haleem, A., Javaid, M., Singh, R. P., Suman, R., & Rab, S. (2021). Biosensors applications in medical field: A brief review. Sensors International, 2, 100100.
Ates, H. C., Nguyen, P. Q., Gonzalez-Macia, L., Morales-Narváez, E., Güder, F., Collins, J. J., & Dincer, C. (2022). End-to-end design of wearable sensors. Nature Reviews Materials, 7(11), 887-907.
Jin, X., Liu, C., Xu, T., Su, L., & Zhang, X. (2020). Artificial intelligence biosensors: Challenges and prospects. Biosensors and Bioelectronics, 165, 112412.
Dave, S., Dave, A., Radhakrishnan, S., Das, J., & Dave, S. (2022). Biosensors for healthcare: an artificial intelligence approach. Biosensors for Emerging and Re-Emerging Infectious Diseases, 365-383.
Smith, A. A., Li, R., & Tse, Z. T. H. (2023). Reshaping healthcare with wearable biosensors. Scientific Reports, 13(1), 4998.
Kulkarni, M. B., Rajagopal, S., Prieto-Simón, B., & Pogue, B. W. (2024). Recent advances in smart wearable sensors for continuous human health monitoring. Talanta, 272, 125817.
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