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1702773 Vol 4 · Issue 12 Download Paper

Development of An Enhanced Microcontroller Based Heart Rate Measuring Device

Aliyu Nuhu Shuaibu Bamshak N. Jelten Patrick N. Julius Danjuma D. Dajab Emmanuel K. Akut Maryam L. Imam Kishak Z. Cinfwat Solomon I. Momoh E. I. Felix

Subject area: Science,Engineering and Technology  ·  Area of research: Electrical and Electronics Engineering

Abstract

Prevalent of cardiovascular diseases has led to the continuous development of devices and systems that can measure, detect, and provides early warning symptoms and cardiovascular abnormalities. Recent studies have shown that cardiovascular diseases are the amount the leading causes of death, thus the need to continuously develop systems that will monitor, observe and scrutinize cardiovascular properties such as pulse rate and blood oxygen concentration. In this paper, a non-invasive microcontroller-based oximeter for convenient measuring of heart rate and monitoring of blood oxygen saturation is developed. This will be very helpful to people at high risks of cardiovascular disorder and disease.

Keywords

Heart rate, invasive and non-invasive, oximeter

References

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[2] Hashem, M. A., Rushdi S., Md. Abdul K., and Md. Abu S. Design and Development of a Heart Rate Measuring Device using Fingertip.

[3] Duaa E. and Idris B. (2017). Arduino Based Heart Rate Monitoring and Heart Attack Detection System. A final year project report submitted to the department of Electrical and Electronics Engineering, University of Khartoum.

[4] Santiago Lopez. (2012). Pulse Oximeter Fundamentals and Design. Freescale Semiconductor. Document Number: AN4327 Application Note Rev. 2.

[5] Bandana M. and Ajit K. Patro. (2016). Heart Rate Monitoring System Using Finger Tip Through Arduino and Processing Software. International Journal of Science, Engineering and Technology Research (IJSETR), Volume 5, Issue 1. Pages 84-89.

[6] Gabriella C., Giovanna C. and Vincenzo Pasquadibisceglie G. Z. (). Contact-Less Real- Time Monitoring of Cardiovascular Risk Using Video Imaging and Fuzzy Inference Rules.

[7] Radovan S. and Dejan K. (2013). Design of an Oximeter Based on LED-LED Configuration and FPGA Technology.

[8] Kainat Z., and Lakshmi S. P., Sanjana R. G., Varsha R. and Shobha C. K. (2018). Real Time Heart Attack and Heart Rate Monitoring Android Application. International Journal of Computer Science and Mobile Computing A Monthly Journal of Computer Science and Information Technology.

[9] Mubarak R. (2018). Design and Fabrication of Arduino Based Heart Rate Monitoring System Using Reflectance Photoplethysmography. A final year project report submitted at the department of Electrical and Electronics Engineering, University of Sunderland.

[10] Alexandra, F., Arben, K., Danielle, M. and Nicolas, R., (). Reflectance-Based Pulse Oximeter for the Chest and Wrist. A Major Qualifying Project Report Submitted to the Faculty of the WORCESTER POLYTECHNIC INSTITUTE.

[11] Rustam S. (2017). Pulse oximeter controlled by microprocessor. Bachelor thesis at the Department of Biomedical Technology, CZECH TECNICAL UNIVERSITY IN PRAGUE.

[12] Mansor, H., Meskam, S. S., Zamery, N. S., Rusli, N. A., and Akmeliawati, R. (2015). Portable heart rate measurement for remote health monitoring system. 10th Asian Control Conference (ASCC).

[13] Harshad N., Rijhi D. (2018). “A Heartbeat Detection Method Based on IOT and Monitoring System Using Arduino Uno and Thing-Speak”. International Journal of Electronics, Communication & Instrumentation Engineering Research and Development (IJECIERD).

How to cite this paper

Aliyu Nuhu Shuaibu, Bamshak N. Jelten; Patrick N. Julius, Danjuma D. Dajab; Emmanuel K. Akut, Maryam L. Imam; Kishak Z. Cinfwat, Solomon I. Momoh; E. I. Felix "Development of An Enhanced Microcontroller Based Heart Rate Measuring Device" Iconic Research And Engineering Journals Volume 4 Issue 12 2021 Page 82-87
Aliyu Nuhu Shuaibu, Bamshak N. Jelten; Patrick N. Julius, Danjuma D. Dajab; Emmanuel K. Akut, Maryam L. Imam; Kishak Z. Cinfwat, Solomon I. Momoh; E. I. Felix "Development of An Enhanced Microcontroller Based Heart Rate Measuring Device" Iconic Research And Engineering Journals, vol. 4, no. 12, Jun. 2021
Aliyu Nuhu Shuaibu, Bamshak N. Jelten; Patrick N. Julius, Danjuma D. Dajab; Emmanuel K. Akut, Maryam L. Imam; Kishak Z. Cinfwat, Solomon I. Momoh; E. I. Felix (2021). Development of An Enhanced Microcontroller Based Heart Rate Measuring Device. Iconic Research And Engineering Journals, 4(12).
Aliyu Nuhu Shuaibu, Bamshak N. Jelten; Patrick N. Julius, Danjuma D. Dajab; Emmanuel K. Akut, Maryam L. Imam; Kishak Z. Cinfwat, Solomon I. Momoh; E. I. Felix "Development of An Enhanced Microcontroller Based Heart Rate Measuring Device" Iconic Research And Engineering Journals, vol. 4, no. 12, Jun. 2021.
@article{1702773,
      author = {Aliyu Nuhu Shuaibu, Bamshak N. Jelten; Patrick N. Julius, Danjuma D. Dajab; Emmanuel K. Akut, Maryam L. Imam; Kishak Z. Cinfwat, Solomon I. Momoh; E. I. Felix},
      title = {Development of An Enhanced Microcontroller Based Heart Rate Measuring Device},
      journal = {Iconic Research And Engineering Journals},
      year = {2021},
      volume = {4},
      number = {12},
      pages = {82-87},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1702773.pdf},
      abstract = {Prevalent of cardiovascular diseases has led to the continuous development of devices and systems that can measure, detect, and provides early warning symptoms and cardiovascular abnormalities. Recent studies have shown that cardiovascular diseases are the amount the leading causes of death, thus the need to continuously develop systems that will monitor, observe and scrutinize cardiovascular properties such as pulse rate and blood oxygen concentration. In this paper, a non-invasive microcontroller-based oximeter for convenient measuring of heart rate and monitoring of blood oxygen saturation is developed. This will be very helpful to people at high risks of cardiovascular disorder and disease.},
      keywords = {Heart rate, invasive and non-invasive, oximeter},
      month = {June},
  }