Optical-electronic monitoring system of biomedical indicators

Authors

  • G.I. Barylo Lviv Polytechnic National University
  • M.S. Ivakh Lviv Polytechnic National University
  • Z.M. Mykytiuk Lviv Polytechnic National University
  • I.P. Kremer Lviv Polytechnic National University

DOI:

https://doi.org/10.15330/pcss.21.4.779-784

Keywords:

optoelectronic system, multiparameter analysis, monitoring of indicators, microcontroller unit

Abstract

The work is devoted to the development of medical systems for monitoring biomedical indicators. The problem of developing a universal hardware software-controlled control system for the diagnosis of biological objects is solved. The main requirements for such a system are a wide range of functionality for combining different methods of measurement transformation and compliance with modern trends in the development of microelectronic sensors. Given the requirements for modern microcircuitry, in particular for sensing devices of the Internet of Things, the signal path of the sensors is implemented on the basis of PSoC family 5LP Family Cypress. Approbation of the developed system is carried out in the course of research of the character of optical radiation in the course of measurement of biomedical indicators.

References

A.A.T. Bui, W. Hsu, Medical Data Visualization: Toward Integrated Clinical Workstations. (Medical Imaging Informatics. Springer, Boston, MA, 2010).

S. Leatherman, P.C. Smith, E. Mossialos, I. Papanicolas, eds. Performance Measurement for Health System Improvement: Experiences, Challenges and Prospects. (Cambridge, UK: Cambridge University Press, 2010).

M. Chan, E. Campo, D. Brulin, D. Est`eve. Journal of Science and Technology: Issue on Information and Communications Technology [Online] 3.1 (2017) (doi:10.31130/jst.2017.39).

S. Liu, R. Zhang, Z. Zheng, Y. Zheng, Sensors (Basel) (2018) (doi: 10.3390/s18103203. PMID: 30248969).

Z. Hotra, O. Kozhukhar, M. Ivakh, H. Barylo, V. Virt, 13th International Conference on Modern Problems of Radio Engineering, Telecommunications and Computer Science (Institute of Electrical and Electronics Engineers Inc., Lviv-Slavsko, 2016) (doi:10.1109/TCSET.2016.7452184), р. 787-789.

Hotra, Z. et al., XVth International Conference on the Perspective Technologies and Methods in MEMS Design (MEMSTECH) (Institute of Electrical and Electronics Engineers Inc., Polyana, 2019), p. 140-143.

PSoC® 5LP: CY8C52LP Family Datasheet: Programmable System-on-Chip. http://www.cypress.com/documentation/datasheets/psoc-5lp-cy8c52lp-family-datasheet-programmable-system-chip-psoc.

Optoelectronics, Photodetectors, https://www.vishay.com/search?searchChoice=part&query=BPW21R.

PSoC® Creator™ Integrated Design Environment (IDE) https://www.cypress.com/products/psoc-creator-integrated-design-environment-ide.

Published

2020-12-31

How to Cite

Barylo, G., Ivakh, M., Mykytiuk, Z., & Kremer, I. (2020). Optical-electronic monitoring system of biomedical indicators. Physics and Chemistry of Solid State, 21(4), 779–784. https://doi.org/10.15330/pcss.21.4.779-784

Issue

Section

Scientific articles

Most read articles by the same author(s)