RANCANG BANGUN SISTEM PEMANTAUAN DAN PENGENDALIAN CAIRAN INFUS MELALUI DISPLAY KONTROL DAN APLIKASI MOBILE DI MASA PANDEMIC COVID-19

RAJES KHANA, MUHAMMAD RIJALI

Abstract


During the COVID-19 pandemic, nurses were overwhelmed to deal with sick patients and patients who were positively affected by the COVID-19 virus. Especially in sick patients with infusion needs in COVID-19 positive patients, which is not controlled due to the large number of patients. Along with that, the need for technology is needed in the medical world. With extensive hospital conditions, large patient numbers and limited medical personnel and the demands of good patient care are always a problem in every hospital. To solve the problem can be solved by creating a system of control and monitoring in real time by nurses without having to do a check manually. The system uses Arduino Uno microcontroller and Node MCU ESP 8266 with photodiode and photogate sensor, 2.4" LCD as control display, Blynk as mobile application to controlling and monitoring, servo motor as infusion hose suppressor. The system provides information through display controls and blynk applications. The information obtained is the volume of infusions, the percentage of infusions, the rate of infusion, the regulation of doses through the servo motor as well as warnings if the infusion will run out and if the blood rises to the infusion hose.

Keywords


sistem pemantauan; pengendalian cairan infus; display kontrol; aplikasi mobile

Full Text:

PDF

References


World Health Organization (WHO), “WHO Director-General ’ s Remarks at the Media Briefing on 2019-nCoV on 11 February 2020,” 2020.

J. H. CSEE, “Coronavirus COVID-19 Global Cases,” Feb. 12, 2020.

N. R. Yunus and A. Rezki, “Kebijakan Pemberlakuan Lock Down Sebagai Antisipasi Penyebaran Corona Virus Covid-19,” SALAM J. Sos. dan Budaya Syar-i, vol. 7, no. 3, Mar. 2020, doi: 10.15408/sjsbs.v7i3.15083.

L. Siv-Lee and L. Morgan, “Implementation of wireless ‘intelligent’ pump IV infusion technology in a not-for-profit academic hospital setting,” 2007.

R. W. Hicks, D. D. Cousins, and R. L. Williams, “Selected medication-error data from USP’s MEDMARX program for 2002,” 2004. [Online]. Available: www.usp.org.

J. M. Rothschild, C. A. Keohane Bsn, S. Thompson, and D. W. Bates, “Intelligent Intravenous Infusion Pumps to Improve Medication Administration Safety.”

M. Hartina Ulfa and S. Purwanto, “PROTOTYPE SEDERHANA ALAT MONITORING ALIRAN DARAH NAIK KE SELANG INFUS A SIMPLE PROTOTYPE BLOOD FLOW MONITORING TOOL GOES UP TO THE INFUSION HOSE,” J. keperawatan Sriwij., vol. 6, no. 1, 2019.

G. P. Mahardhika and M. Herawati, “Rancang Bangun Perangkat Pengendali Debit Tetesan Infus Otomatis Untuk Proses Terapi Infus,” 2015.

R. Alyah, “Deteksi Cairan Infus Melalui SMS Berbasis Mikrokontroller Arduino Uno,” J. UIN Alaudin, vol. 2, no. 2, 2017.

Rizan, “PERANAN PENERAPAN SISTEM INFORMASI MANAJEMEN TERHADAP EFEKTIVITAS KERJA PAGAWAI LEMBAGA PEMASYARAKATAN NARKOTIKA (LAPASTIKA) BOLLANGI KABUPATEN GOWA,” 2013.

Hasanuddin Muhammad, “SISTEM MONITORING INFUS MENGGUNAKAN ARDUINO MEGA 2560,” Universitas Islam Negeri Alauddin, 2017.

J. H.M, Analisa dan Desain Sistem Informasi: Pendekatan Terstruktur Teori dan Praktik Aplikasi Bisnis. Yogyakarta: ANDI, 2005.

M. Corps, Design, Monitoring and Evaluation Guidebook. 2005.

W. R, Monitoring, evaluasi, dan pengendalian: Konsep dan pembahasan. 2008.

JKTE VOLUME 5 NOMOR 1 2020

C. T.A, The synergies of the learning organization, visual factory management, and on the job training. Performance Improvement. 2005.

N. S. Nise, Control Systems Engineering, International Student Version, 6th ed. 2011.

N. Fachrizal B2te-Bppt and P. Serpong, “DASAR TEKNIK KENDALI PROSES DI INDUSTRI DAN BANGUNAN.”

A. Pranshul, Sardana. Karla, Mohit dan Sardana, “Design, Fabrication, and Testing of an Internet Connected Intravenous Drip Monitoring Device,” J. Sens. Actuator Networks, vol. 8, no. 2, pp. 1–20, 2018.

K.Keerthana, Vidhya. Shree, M.Janaki dan J. Kanimozhi, “A survey of System Used in the Monitoring and Control of Intravenous Infusion,” J. Eng. Technol., vol. 11, no. 1, pp. 114–119, 2019.

Muljidipo N, R.U.A Sherwin, Sompie dan Robot R.F, “Rancang Bangun Otomatis Sistem Infus Pasien,” E-Jurnal Tek. Elektro dan Komput., vol. 4, no. 4, pp. 12–22, 2015.

S. Mira, “Rancang Bangun Sistem Pemantauan Sisa Cairan Infus dan Pengendalian Aliran Infus Menggunakan Jaringan Nirkabel,” Universitas Andalas Padang, 2016.

Asmadi, Teknik Prosedural Keperawatan Konsep dan Aplikasi Kebutuhan Dasar Klien, 2nd ed. Jakarta: Salemba Medika, 2008.

H. A. Aziz Alimul, Pengantar Kebutuhan Dasar Manusia: Aplikasi Konsep dan Proses Keperawatan, 2nd ed. Jakarta: Salemba Medika, 2006.

“RANCANG BANGUN SISTEM MONITORING VOLUME DAN LAJU TETES INFUS PASIEN MENGGUNAKAN NODEMCU ESP8266.”

MHD Fadhel Zufa, “TUGAS AKHIR Perancangan Sistem Pemantauan Level Cairan Infus Menggunakan NodeMcU dan Sensor Photodioda Terintegrasi IoT (Internet Of Thing),” Universitas Muhammadiyah Sumatera Utara, Medan, 2020.

Rianto,Noorman dan Kautsar, Syamsiar, “Modul Ajar Praktikum Otomasi dan Robotika. Surabaya,” 2015.

H. Abdul Kadir, Algoritma Pemrograman Menggunakan C++. Yogyakarta: ANDI, 2006.

Luh Joni Erawati Dewi, “Media Pembelajaran Bahasa Pemrograman C++,” JPTK,UNDIKSHA, vol. 7, pp. 63–72, 2010.

Junaidi and Y. D. Prabowo, Project Sistem Kendali Elektronik Berbasis Arduino. 2018.

Yuhefizar, 10 Jam Menguasai Internet Teknologi dan API. Bandung: Alexmedia, 2008.

I. Winarti, “Pengaruh Area Hotspot(Wi-Fi) Bagi Pemenuhan Kebutuhan Informasi Pemustaka Di Kantor Perpustakaan Daerah Kabupaten Jepara,” Universitas Diponegoro Semarang, 2010.

Hartantii, R.S., Sulhadi., Aji, Mahardika P, “Analisis Konsentrasi Cairan Infus Terhadap Tegangan pada Sensor Infus,” J. Ilmu Pendidik. Fis., vol. 1, no. 2, pp. 45–48, 2016.

K. Syaiful, Sensor dan Aktuator untuk SMK/MAK Kelas XI, 1st ed. Jakarta: Direktorat Jenderal Peningkatan Mutu Pendidik dan Tenaga Kependidikan., 2013.

P. Roland, “Use LM393 IR Module as Motor Speed Sensor,” teacmemicro.com, 2019. https://www.teachmemicro.com/lm393-ir-module-motor-speed-sensor/ (accessed Oct. 10, 2020).

JKTE VOLUME 5 NOMOR 1 2020

Y. E. K. Harlin, “RANCANG BANGUN EMERGENCY RESPONS CAIRAN INFUS BERBASIS INTERNET OF THINGS DAN TETES INFUS OTOMATIS,” Universitas Jember, 2019.

S. Pradeeka, Hands-On Internet of Things with Blynk. Birmingham: Packt>, 2018.




DOI: https://doi.org/10.52447/jkte.v5i1.5188

Refbacks

  • There are currently no refbacks.