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A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM

Year 2010, Volume: 10 Issue: 2, 1201 - 1205, 20.01.2012

Abstract

Telemedicine is producing a great impact in the monitoring of patients located in remote non-clinical environments such as homes, elder communities, gymnasiums, schools, remote military bases, ships, and rural area. A number of applications, ranging from data collection to chronic patient surveillance, and even to the control of therapeutic procedures, are being implemented in many parts of the world. As part of this growing trend, this paper explains the design of a portable heart-rate monitoring system. A prototype system consists of analog data acquisition and pre-processing module which has an EEPROM memory for recording heart-rate values and corresponding time sequences. This module connected to computer via serial data communication protocol. At the computer side, we use interface software which is enable to graphically display the recorded heart-rate values. Keywords: ECG monitoring, heart-rate, microcontroller, telemedicine.

References

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  • B.H. Yang, S. Rhee, “Development of the ring sensor for health-care automation”, Robotics and Autonomous Systems, vol. 30, pp. 273-281, 2000.
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  • A. I. Hernandez, F. Mora, G. Villegas, G. Passariello, G. Carroult, “Real-time ECG transmission via internet for non-clinical applications”, IEEE Trans. on Information Tech. in Biomedicine, vol. 5, no. 3, pp. 253-257, 2001.
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  • M. I. Ibrahimy, F. Ahmed, M. A. M. Ali, E. Zahedi, “Real-time signal processing for fetal heart-rate monitoring”, IEEE Trans. on Biomedical Eng., vol. 50, no. 2, pp. 258-262, 2003.
  • E. M. Spinelli, R. Pallas, M. A. Mayosky, “AC coupled front-end for biopotential measurements”, IEEE Trans. on Biomedical Eng., vol. 50, no. 3, pp. 391-395, 2003.
  • J. J. Carr, J. M. Brown, “Introduction to Biomedical Equipment Technology”, Prentice Hall, New Jersey, 2001.
Year 2010, Volume: 10 Issue: 2, 1201 - 1205, 20.01.2012

Abstract

References

  • M. Engin, E. Çağlav, E. Z. Engin, “Real-time ECG signal Measurement, vol. 37, pp. 167-171, 2005. telephone network”,
  • B.H. Yang, S. Rhee, “Development of the ring sensor for health-care automation”, Robotics and Autonomous Systems, vol. 30, pp. 273-281, 2000.
  • M. Engin, A. Demirel, E. Z. Engin, M. Fedakar, “Recent developments and trends in biomedical sensors”, Measurement, vol. 37, pp. 173-188, 2005.
  • J. G. Webster, “Medical Instrumentation”, John Wiley & Sons, New York, 1998.
  • M. I. Owis, A. H. Abou-Zied, A. M. Youssef, Y. M. Kadah, “Study of features based on non-linear dynamical modeling in ECG arrhythmia detection and classification”, IEEE Trans. on Biomedical Eng., vol. 49, no. 7, pp. 733-736, 2002.
  • A. I. Hernandez, F. Mora, G. Villegas, G. Passariello, G. Carroult, “Real-time ECG transmission via internet for non-clinical applications”, IEEE Trans. on Information Tech. in Biomedicine, vol. 5, no. 3, pp. 253-257, 2001.
  • F. Ahmed, M. I. Ibrahimy, M. A. M. Ali, E. Zahedi, “A portable recorder for long-term fetal heart-rate monitoring”, Microprocessors and Microsystems, vol. 26, pp. 325-330, 2002.
  • M. I. Ibrahimy, F. Ahmed, M. A. M. Ali, E. Zahedi, “Real-time signal processing for fetal heart-rate monitoring”, IEEE Trans. on Biomedical Eng., vol. 50, no. 2, pp. 258-262, 2003.
  • E. M. Spinelli, R. Pallas, M. A. Mayosky, “AC coupled front-end for biopotential measurements”, IEEE Trans. on Biomedical Eng., vol. 50, no. 3, pp. 391-395, 2003.
  • J. J. Carr, J. M. Brown, “Introduction to Biomedical Equipment Technology”, Prentice Hall, New Jersey, 2001.
There are 10 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Mehmet Engin

Tayfun Dalbastı This is me

Saygın Bıldık This is me

Turan Karıpçın This is me

Erkan Zeki Engın

Candan Caner This is me

Publication Date January 20, 2012
Published in Issue Year 2010 Volume: 10 Issue: 2

Cite

APA Engin, M., Dalbastı, T., Bıldık, S., Karıpçın, T., et al. (2012). A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM. IU-Journal of Electrical & Electronics Engineering, 10(2), 1201-1205.
AMA Engin M, Dalbastı T, Bıldık S, Karıpçın T, Engın EZ, Caner C. A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM. IU-Journal of Electrical & Electronics Engineering. January 2012;10(2):1201-1205.
Chicago Engin, Mehmet, Tayfun Dalbastı, Saygın Bıldık, Turan Karıpçın, Erkan Zeki Engın, and Candan Caner. “A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM”. IU-Journal of Electrical & Electronics Engineering 10, no. 2 (January 2012): 1201-5.
EndNote Engin M, Dalbastı T, Bıldık S, Karıpçın T, Engın EZ, Caner C (January 1, 2012) A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM. IU-Journal of Electrical & Electronics Engineering 10 2 1201–1205.
IEEE M. Engin, T. Dalbastı, S. Bıldık, T. Karıpçın, E. Z. Engın, and C. Caner, “A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM”, IU-Journal of Electrical & Electronics Engineering, vol. 10, no. 2, pp. 1201–1205, 2012.
ISNAD Engin, Mehmet et al. “A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM”. IU-Journal of Electrical & Electronics Engineering 10/2 (January 2012), 1201-1205.
JAMA Engin M, Dalbastı T, Bıldık S, Karıpçın T, Engın EZ, Caner C. A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM. IU-Journal of Electrical & Electronics Engineering. 2012;10:1201–1205.
MLA Engin, Mehmet et al. “A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM”. IU-Journal of Electrical & Electronics Engineering, vol. 10, no. 2, 2012, pp. 1201-5.
Vancouver Engin M, Dalbastı T, Bıldık S, Karıpçın T, Engın EZ, Caner C. A DESIGN OF PORTABLE HEART-RATE MONITORING SYSTEM. IU-Journal of Electrical & Electronics Engineering. 2012;10(2):1201-5.