Acta Mechanica Slovaca 2021, 25(4):16-22 | DOI: 10.21496/ams.2021.033
Human Vital Signs Monitor
- 1 Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 04200 Košice, Slovak Republic
- 2 Kybernetes, s.r.o., Omska 14, Kosice, Slovak Republic
The article deals with the analysis of human vital signs and the design of a low-cost device for monitoring these quantities for domestic use. The aim is to make such devices available for home use and preliminary diagnostics. The article presents the results of experiments with commercially available sensors designed to measure these quantities.
Keywords: vital sign; measurement; monitor; Arduino.
Received: October 16, 2021; Revised: October 16, 2021; Accepted: October 22, 2021; Published: December 16, 2021 Show citation
References
- Cunha, J. P. S., Cunha, B., Pereira, A. S., Xavier, W., Ferreira, N. and Meireles, L.: "Vital-Jacket® (2010). A wearable wireless vital signs monitor for patients' mobility in cardiology and sports. 2010 4th International Conference on Pervasive Computing Technologies for Healthcare, 2010, Date of Conference: 22-25 March 2010. Conference Location: Munich, Germany. Publisher: IEEE. pp. 1-2, doi: 10.4108/ICST.PERVASIVEHEALTH2010.8991.
Go to original source...
- He, D. D., Winokur, E. S. And Sodini, C. G. (2015). An Ear-Worn Vital Signs Monitor. In IEEE Transactions on Biomedical Engineering, vol. 62, no. 11, Publisher: IEEE, pp. 2547-2552, Nov. 2015, doi: 10.1109/TBME.2015.2459061.
Go to original source...
- Weller, R.S., Foard, K.L. & Harwood, T.N. (2018). Evaluation of a wireless, portable, wearable multi-parameter vital signs monitor in hospitalized neurological and neurosurgical patients. J Clin Monit Comput 32, pp. 945-951 (2018). https://doi.org/10.1007/s10877-017-0085-0.
Go to original source...
- Winokur, E. S., He, D. D. And Sodini, C. G. (2012). A wearable vital signs monitor at the ear for continuous heart rate andPulse Transit Time measurements. 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Date of Conference: 28 Aug.-1 Sept. 2012, Conference Location: San Diego, CA, USA, 2012, Publisher: IEEE, pp. 2724-2727, doi: 10.1109/EMBC.2012.6346527.
Go to original source...
- SHU, M., TANG, M., YANG, M. AND WEI, N. (2017). The Vital Signs Real-Time Monitoring System Based on Internet of Things. 2017 4th International Conference on Information Science and Control Engineering (ICISCE), Date of Conference: 21-23 July 2017, Conference Location: Changsha, China, Publisher: IEEE, 2017, pp. 747-751, doi: 10.1109/ICISCE.2017.160.
Go to original source...
- Pulse Sensor [online]. [cit. 2021-5-14]. Available online: https://pulsesensor.com/.
- Maxim Integrated MAX30102 Pulse Oximeter & Heart-Rate Sensor. Mouser [online]. [cit. 2021-5-14]. Available online: https://eu.mouser.com/new/maxim-integrated/maximmax30102efd-sensor/
- HAMPTON, J. R., HAMPTON, J. (2019). The ECG Made Easy E-Book. 9th edition. Elsevier Health Sciences, 2019. pages 240. ISBN 0702075043, 9780702075049.
- Analog Devices. "Single-Lead, Heart Rate Monitor Front End," AD8232 datasheet, Aug. 2012.
- GENEVA, I. I., CUZZO, B., TASADUQ FAZILI, T., JAVAID, W. (2019). Normal Body Temperature: A Systematic Review. In. Open Forum Infectious Diseases. Volume 6, Issue 4, April 2019, ofz032, pp. 1-7. https://doi.org/10.1093/ofid/ofz032.
Go to original source...
- VISHAY, "NTC Thermistors, Radial Leaded, Standard Precision," 29049 Datasheet, Jan. 2021.
- IMDK C101H1 pulse oximeter. (2021). User guide. IMDK Medical technology CO., Ltd.
- Belvončíková, D., Bednarčíková, L., Michalíková, M., Štefanovič, B., Trebuňová, M., Mezencevová, V., & Živčák, J. (2020). Development of Mechanism for Finger Prosthesis. Acta Mechanica Slov., 24(4), 6-11. doi: 10.21496/ams.2020.028.
Go to original source...
- Živčák, J., Rajťúková, V., Krajňáková, V., Hudák, R., & Kátlovská, D. (2020). Individual Lower Limb Orthosis. Acta Mechanica Slov, 24(3), 6-9. doi: 10.21496/ams.2020.024.
Go to original source...
- Mitrík, L., Klímová, J., Trebuňová, M., Schnitzer, M., Hudák, R., Živčák, J., Molnár, L., & Modrák, M. (2020). Pre-clinical Testing of the Polymer Implants Enriched of Ceramic Materials with aim on Rate of Osteointegration in a Rabbit Model. Acta Mechanica Slov., 24(1), 14-18. doi: 10.21496/ams.2020.013
Go to original source...
This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.