Sistem Pemantau Detak Jantung dan Saturasi Oksigen dalam Darah (SpO2) Berbasis IoT

Authors

  • Muhammad Taufiq Tamam [SCOPUS ID: 57204198784] Universitas Muhammadiyah Purwokerto
  • Itmi Hidayat Kurniawan Universitas Muhammadiyah Purwokerto
  • Anis Kusumawati Universitas Muhammadiyah Purwokerto

DOI:

https://doi.org/10.30595/techno.v24i2.19137

Keywords:

Heart rate, Blood oxygen saturation (SpO2), Hospital, IoT, Thingspeak

Abstract

Heart rate and blood oxygen saturation (SpO2) are the two main parameters needed to determine the condition of a patient being treated in the intensive care unit (ICU) at a hospital. These two parameters must not be left unattended from monitoring because they can be fatal for the patient.

This study aims to create an IoT-based heart rate monitoring and blood oxygen saturation (SpO2) application so that it can be accessed online in real time anytime and anywhere. The observation process is in the form of analog signal changes which are processed with fast fourier transform arithmetic as digital signal processing. The final process of processing displays the measured heart rate and blood oxygen saturation (SpO2).

Based on the trial results, the use of the thingspeak platform can work well. Parameters of heart rate and blood oxygen saturation (SpO2) can be accessed online in real time anytime and anywhere so as to assist medical personnel in monitoring patients in hospitals.

Author Biography

Muhammad Taufiq Tamam, [SCOPUS ID: 57204198784] Universitas Muhammadiyah Purwokerto

SINTA ID : 6032980

Google Scholar

SCOPUS ID: 57204198784

References

[1] Kementrian Kesehatan Republik Indonesia. (2017). Berita Keadilan Distributif pada Pelayanan Intensif.

[2] Menteri Kesehatan Republik Indonesia. (2010). Keputusan Menteri Kesehatan Republik Indonesia Nomor: 1778/Menkes/SK/XII/2010 tentang Pedoman Penyelenggaraan Pelayanan Intensive Care Unit (ICU) di Rumah Sakit.

[3] Tavakoli, M., L. Turicchia, and R. Sarpeshkar. (2010). An Ultra-Low-Power Pulse Oximeter Implemented With an Energy-Efficient Transimpedance Amplifier. Biomedical Circuits and Systems, IEEE Transactions On 4.1 : 27-38.

[4] Bimbaum, S. (2009). Pulse oximetry: identifying its applications, coding, and reimbursement. American College of Chest Physicians; 135:838-841.

[5] Mendelson, Y. (2002), Non-invasive pulse oximetry utilizing skin reflectance photoplethysmography, Biomedical Engineering, IEEE Engineering in Medicine and Biology Society, Vol: 35, No: 10, pp:798-805.

[6] Yuhefizar, Nasution, A., Putra, R., Asri, E., Satria, D. (2019). Alat Monitoring Detak Jantung Untuk Pasien Beresiko Berbasis IoT Memanfaatkan Aplikasi OpenSID berbasis Web. Jurnal RESTI (Rekayasa Sistem dan Teknologi Informasi), Vol. 3, No 2, 265-270.

[7] Adrian, M. A., Widiarto, M. R., Kusumadiarti, R. S. (2021). Health Monitoring System Dengan Indikator Suhu Tubuh, Detak Jantung Dan Saturasi Oksigen Berbasis Internet of Things (IoT). Jurnal PETIK, Vol. 7, No. 2.

[8] Ulum, M. B., Tarigan, M. (2020). Perancangan Sistem Monitoring Detak Jantung Bagi Penderita Kardiovaskular Berbasis Internet of Things. Jurnal Komputasi, Vol. 8, No. 1, 15-20.

[9] Utomo, A. S., Negoro, E. H. P., Sofie, M. (2019). Monitoring Heart Rate dan Saturasi Oksigen Melalui Smartphone. Jurnal SIMETRIS, Vol. 10, No. 1, 319- 324.

[10] Agustian, I. (2019). Rancang Bangun Pemantau Detak Jantung dan Suhu Tubuh
Portabel Dengan Sistem IoT. Jurnal Amplifier, Vol. 9 No. 2, 14-18.

Downloads

Published

2023-10-11