Optimasi Perawatan Pasien Rawat Inap Berbasis Android Untuk Pemantauan Cairan Infus
DOI:
https://doi.org/10.30865/mib.v7i3.6060Keywords:
Patient, Infusion, Internet, ArduinoAbstract
Good and thorough patient care at the hospital is very necessary, so that someone who is treated at the hospital can be served properly, one of which is giving infusions to patients. So far, many hospitals or puskesmas provide infusions manually, relying on nurses or those who look after the patient. This study aims to provide Android-based infusion fluids, so that nurses or caregivers can find out the condition of the patient's infusion. The research used is quantitative research with experimental methods. The location of the research was carried out at the Siti Suaibah clinic located in Tempel Village, Kec.Krian, Kab.Sidoarjo. Data processing methods are used to sort data according to the topic where the data produces something from a research and also Coding data. The research carried out consisted of two stages, the first was making software and the second was making hardware. The results of the research are sending infusion fluid data every 10-12 seconds, and auto refreshing on the blynk application every 5 seconds with a measurement error percentage of 2.15 from the results of manual measurements as well as sending notifications on smartphones if the volume of intravenous fluids is below 6 mm by 70 time. The data sharing process was successful because the data held by the ultrasonic and Mlx90614 temperature of the infusion fluid were successfully stored in the Blynk database via the Arduino Wemos D1R2.References
A. Zainuri, D. R. Santoso, and I. Pendahuluan, “Monitoring dan Identifikasi Gangguan Infus Menggunakan Mikrokontroler AVR,†vol. 6, no. 1, pp. 49–54, 2012.
I. Sucipta, J. W. Simatupang, C. Kaswandi, and I. Purnama, “Prototipe Pemantauan Tetes Cairan Infus Berbasis IoT Terkoneksi Perangkat Android,†no. February 2022, 2021, doi: 10.22441/jte.2021.v12i3.003.
P. Bimbingan and K. Islam, “Dampak terapi doa terhadap pasien rawat inap di rumah sakit umum daerah meuraxa kota banda aceh,†2021.
A. Junaidi, “INTERNET OF THINGS , SEJARAH , TEKNOLOGI DAN PENERAPANNYA : REVIEW,†vol. I, no. 3, pp. 62–66, 2015.
C. Kerja, D. A. N. Manfaat, and A. Kurniawan, “SEJARAH , CARA KERJA DAN MANFAAT INTERNET OF THINGS,†pp. 36–41, 2009.
P. Issn, “INTERNET OF THINGS ( IOT ) SISTEM PENGENDALIAN LAMPU,†vol. 4, no. 1, pp. 19–26, 2018.
V. Rahmadhani, W. Arum, U. Bhayangkara, J. Raya, U. Bhayangkara, and J. Raya, “LITERATURE REVIEW INTERNET OF THINK ( IOT ): SENSOR , KONEKTIFITAS DAN QR CODE,†vol. 3, no. 2, pp. 573–582, 2022.
M. W. Rija, “Pentingnya peran pasien dan keluarga untuk mencegah terjadinya bahaya di pelayanan kesehatan.â€
T. Pencegahan and I. Nosokomial, “personal hygiene .,†vol. 3, no. 1, 2017.
I. N. Mustafa, W. N. Dewi, and V. Elita, “Triage Implementation Knowledge among Patients ’ Families,†no. 18, 2022, doi: 10.26714/mki.5.2.2022.110-116.
N. Ulpah, L. Kamelia, T. Prabowo, T. Elektro, T. Elektro, and F. Sains, “ID : 36 Rancang Bangun Penyiraman Otomatis Berbasis IoT Menggunakan Smartphone Desaign and Implementation of Automatic Watering System using Smartphone Base on IoT,†no. November 2020, pp. 279–286.
G. Priyandoko, “Rancang Bangun Sistem Portable Monitoring Infus Berbasis Internet of Things,†vol. 3, pp. 56–61, 2021.
M. R. Fadilah, D. Hirawan, T. Informatika, U. Komputer, J. Dipatiukur, and N. Bandung, “SISTEM MONITORING INFUS PASIEN DI RUMAH SAKIT IBU DAN ANAK MUTIARA HATI BERBASIS INTERNET OF THINGS.â€
D. Nataliana, N. Taryana, and E. G. I. Riandita, “Alat Monitoring Infus Set pada Pasien Rawat Inap Berbasis Mikrokontroler ATmega 8535,†vol. 4, no. 1, pp. 1–15, 2016.
N. Muljodipo, S. R. U. A. Sompie, R. F. Robot, M. Eng, J. T. Elektro-ft, and E. Nuryantomuljodipogmailcom, “Rancang Bangun Otomatis Sistem Infus Pasien,†vol. 4, no. 4, pp. 12–22, 2015.
D. Sasmoko et al., “IMPLEMENTASI PENERAPAN INTERNET of THINGS ( IoT ) PADA MONITORING INFUS MENGGUNAKAN ESP 8266 DAN WEB UNTUK BERBAGI DATA.â€
G. W. Sasmito, “Penerapan Metode Waterfall Pada Desain Sistem Informasi Geografis Industri Kabupaten Tegal,†vol. 2, no. 1, pp. 6–12, 2017.
M. Artiyasa, A. N. Rostini, A. P. Junfithrana, P. Studi, T. Elektro, and U. N. Putra, “Aplikasi smart home node mcu iot untuk blynk,†vol. 7, no. 1, pp. 1–7, 2020.
R. A. Aristyo, B. Arifin, and M. Ismail, “BERMOTOR BERBASIS IoT DENGAN MENGGUNAKAN MODUL NodeMCU dan APLIKASI ANDROID Blynk,†vol. 12, no. 1, pp. 14–24, 2021.
M. A. Laili and A. Triayudi, “DAN APPS BLYNK BERBASIS ANDROID UNTUK SISTEM MONITORING KEAMANAN,†vol. 9, no. 2, pp. 119–125, 2022, doi: 10.30656/jsii.v9i2.5161.
H. A. Kusuma et al., Pemrograman Dasar Internet of Things Menggunakan ESP8266, no. September. 2022.
Y. R. Putung, “Rancang Bangun Monitoring Cairan Infus Dengan Arduino Nano Berbasis Android,†vol. 5, pp. 1–6, 2023.
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