Journal of Biomedical and Sustainable Healthcare Applications


Analysis of Biomedical Applications in Embedded Systems Devices



Journal of Biomedical and Sustainable Healthcare Applications

Received On : 12 November 2020

Revised On : 10 January 2021

Accepted On : 25 April 2021

Published On : 05 July 2021

Volume 01, Issue 02

Pages : 124-131


Abstract


Embedded systems are rapidly being used in clinical and biological applications, as well as commercial, telecommunications, government, and other business applications. Embedded system solutions are growing in popularity, not only with types of technologies, garments, industries, healthcare and military hardware, and mobile computers, but with software solutions like' electronic worlds' and 'mobile worlds,' deep learning, and internet of things, which allow for the creation of a wide range of application. With the growth of viral illnesses like the Covid-19 virus, tele-health technologies for diagnostics, prognostic, and patient treatment have become more important in recent decades. In medical technologies, embedded device techniques have taken a significant role. Developing techniques to improve the security of medical practitioners in the case of pandemic contagious diseases, such as epidemics, is particularly important. Patients released from clinics home-based or in treatment wards that are non-intensive during the quarantine period, or segregated in their residences, outpatients’ departments, and moderately ailing individuals are progressively being monitored remotely, instantaneously, safely, and rapidly for this reason. The applications biomedical applications in embedded systems will be discussed in this paper.


Keywords


Embedded Systems, Biomedical Applications, Medical Devices, Internet of Things.


  1. S. Balandin and M. Gillet, "Embedded Networks in Mobile Devices", International Journal of Embedded and Real-Time Communication Systems, vol. 1, no. 1, pp. 22-36, 2010. Doi 10.4018/jertcs.2010103002.
  2. O. Rübenkönig, Z. Liu and J. Korvink, "Integrated Engineering Development Environment", The Mathematica Journal, vol. 10, no. 3, 2007. Doi: 10.3888/tmj.10.3-8.
  3. Φ. Γώττας, "Development and Integration of Teleconference services in Moodle", Διεθνές Συνέδριο για την Ανοικτή & εξ Αποστάσεως Εκπαίδευση, vol. 6, no. 2, 2016. Doi: 10.12681/icodl.665.
  4. D. Balaso, "Automatic College Bell Using Raspberry-Pi", International journal of Emerging Trends in Science and Technology, 2016. Doi: 10.18535/ijetst/v3i06.06.
  5. F. Hamady, A. Kayssi, A. Chehab and M. Mansour, "Evaluation of Low-Power Computing when Operating on Subsets of Multicore Processors", Journal of Signal Processing Systems, vol. 70, no. 2, pp. 193-208, 2012. Doi: 10.1007/s11265-012-0697-z.
  6. P. Duangmanee and P. Uthansakul, "Clock-Frequency Switching Technique for Energy Saving of Microcontroller Unit (MCU)-Based Sensor Node", Energies, vol. 11, no. 5, p. 1194, 2018. Doi: 10.3390/en11051194.
  7. A. AL-Marakeby, "FPGA on FPGA: Implementation of Fine-grained Parallel Genetic Algorithm on Field Programmable Gate Array", International Journal of Computer Applications, vol. 80, no. 6, pp. 29-32, 2013. Doi: 10.5120/13867-1725.
  8. G.W.A.D., "Application specific integrated circuit (ASIC) technology", Microelectronics Reliability, vol. 32, no. 3, pp. 447-448, 1992. Doi: 10.1016/0026-2714(92)90076-w.
  9. S. Akbar, B. Henryranu, M. Handono and A. Basuki, "Implementasi Purwarupa Perangkat Rumah Cerdas Pervasif Berbasis Protokol Universal Plug And Play (UPnP) Dan Raspberry Pi General Purpose Input/Output (GPIO)", Jurnal Teknologi Informasi dan Ilmu Komputer, vol. 2, no. 2, p. 116, 2015. Doi: 10.25126/jtiik.201522143.
  10. W. Castro, "Residential design automation with Arduino use", Revista Acta Científica, vol. 8, 2017. Doi: 10.21745/ac08-15.
  11. A. YUAN and M. FU, "Research of the method of software/hardware partitioning in the embedded system", Journal of Computer Applications, vol. 28, no. 9, pp. 2427-2429, 2009. Doi: 10.3724/sp.j.1087.2008.02427.
  12. X. Li, R. Ni, J. Chen, Y. Lyu, Z. Rong and R. Du, "End-to-End Network Slicing in Radio Access Network, Transport Network and Core Network Domains", IEEE Access, vol. 8, pp. 29525-29537, 2020. Doi: 10.1109/access.2020.2972105.
  13. S. Choi and Y. Kim, "Proposal for Improving Software Classification method in the 2nd Edition Revised Works of IEC 62304", Journal of the Institute of Electronics and Information Engineers, vol. 58, no. 5, pp. 47-58, 2021. Doi: 10.5573/ieie.2021.58.5.47.

Acknowledgements


The author(s) received no financial support for the research, authorship, and/or publication of this article.


Funding


No funding was received to assist with the preparation of this manuscript.


Ethics declarations


Conflict of interest

The authors have no conflicts of interest to declare that are relevant to the content of this article.


Availability of data and materials


No data available for above study.


Author information


Contributions

All authors have equal contribution in the paper and all authors have read and agreed to the published version of the manuscript.


Corresponding author


Rights and permissions


Open Access This article is licensed under a Creative Commons Attribution NoDerivs is a more restrictive license. It allows you to redistribute the material commercially or non-commercially but the user cannot make any changes whatsoever to the original, i.e. no derivatives of the original work. To view a copy of this license, visit https://creativecommons.org/licenses/by-nc-nd/4.0/


Cite this article


Yue Dong and Charlie Siu, “Analysis of Biomedical Applications in Embedded Systems Devices”, Journal of Biomedical and Sustainable Healthcare Applications, vol.1, no.2, pp. 124-131, July 2021. doi: 10.53759/0088/JBSHA202101015.


Copyright


© 2021 Yue Dong and Charlie Siu. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.