Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor
The ventilator is a supporter of respiratory needs which is very important for the patient so that there are several parameters that must be monitored specifically, such as the measurement of pressure and flow rate used in the ventilator system, the accuracy of which must be in accordance with the a...
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Poltekkes Kemenkes Surabaya
2022-12-01
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Online Access: | http://teknokes.poltekkesdepkes-sby.ac.id/index.php/Teknokes/article/view/472 |
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author | Rusdi Pratiwo Hadi Her Gumiwang Ariswati Dyah Titisari Syaifudin Syaifudin Sari Luthfiyah Bedjo Utomo Liliek Soetjiatie |
author_facet | Rusdi Pratiwo Hadi Her Gumiwang Ariswati Dyah Titisari Syaifudin Syaifudin Sari Luthfiyah Bedjo Utomo Liliek Soetjiatie |
author_sort | Rusdi Pratiwo Hadi |
collection | DOAJ |
description | The ventilator is a supporter of respiratory needs which is very important for the patient so that there are several parameters that must be monitored specifically, such as the measurement of pressure and flow rate used in the ventilator system, the accuracy of which must be in accordance with the accuracy of the respirator. One of the important parameters to monitor is PIF (Peak Inspiratory Flow) which is the peak inspiratory flow rate given through the ventilator. PIF that is too high or too low can cause adverse effects on the patient. PIF monitoring can be seen through the PIF value and waveform on the PIF. Monitoring the waveform of the PIF will be very useful to improve the results of using the ventilator. The purpose of this research is to get the accuracy and precision of the sensor to display the waveform of the ventilator output. The procedure carried out is to use the F1031V sensor to detect the flow generated by the ventilator and then detect the PIF value and PIF waveform. From this research, the measurement of accuracy and precision of the F1031V sensor to detect PIF and generate a waveform graph is said to be good. This is because the highest error value is ±2.04% at the 20 LPM setting. While the value of the largest standard deviation at the 30 LPM setting is 1.517 and the greatest uncertainty value at the 30 LPM setting is 0.061. Then, the largest correction value is found in the setting of 20 LPM and 30 LPM, namely 0.4. PIF monitoring is carried out to maximize patient care and reduce the breakdown time on the ventilator. |
first_indexed | 2024-04-11T04:21:46Z |
format | Article |
id | doaj.art-7f92719c39604be0a12af716ed33d683 |
institution | Directory Open Access Journal |
issn | 2407-8964 |
language | English |
last_indexed | 2024-04-11T04:21:46Z |
publishDate | 2022-12-01 |
publisher | Poltekkes Kemenkes Surabaya |
record_format | Article |
series | Jurnal Teknokes |
spelling | doaj.art-7f92719c39604be0a12af716ed33d6832022-12-30T14:06:13ZengPoltekkes Kemenkes SurabayaJurnal Teknokes2407-89642022-12-01154230–235230–23510.35882/teknokes.v15i4.472472Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V SensorRusdi Pratiwo Hadi0Her Gumiwang Ariswati1Dyah Titisari2Syaifudin Syaifudin3Sari Luthfiyah4Bedjo Utomo5Liliek Soetjiatie6Department of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaDepartment of Medical Electronics Technology, Poltekkes Kemenkes Surabaya, IndonesiaThe ventilator is a supporter of respiratory needs which is very important for the patient so that there are several parameters that must be monitored specifically, such as the measurement of pressure and flow rate used in the ventilator system, the accuracy of which must be in accordance with the accuracy of the respirator. One of the important parameters to monitor is PIF (Peak Inspiratory Flow) which is the peak inspiratory flow rate given through the ventilator. PIF that is too high or too low can cause adverse effects on the patient. PIF monitoring can be seen through the PIF value and waveform on the PIF. Monitoring the waveform of the PIF will be very useful to improve the results of using the ventilator. The purpose of this research is to get the accuracy and precision of the sensor to display the waveform of the ventilator output. The procedure carried out is to use the F1031V sensor to detect the flow generated by the ventilator and then detect the PIF value and PIF waveform. From this research, the measurement of accuracy and precision of the F1031V sensor to detect PIF and generate a waveform graph is said to be good. This is because the highest error value is ±2.04% at the 20 LPM setting. While the value of the largest standard deviation at the 30 LPM setting is 1.517 and the greatest uncertainty value at the 30 LPM setting is 0.061. Then, the largest correction value is found in the setting of 20 LPM and 30 LPM, namely 0.4. PIF monitoring is carried out to maximize patient care and reduce the breakdown time on the ventilator.http://teknokes.poltekkesdepkes-sby.ac.id/index.php/Teknokes/article/view/472pif, signal, sensor p1031v |
spellingShingle | Rusdi Pratiwo Hadi Her Gumiwang Ariswati Dyah Titisari Syaifudin Syaifudin Sari Luthfiyah Bedjo Utomo Liliek Soetjiatie Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor Jurnal Teknokes pif, signal, sensor p1031v |
title | Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor |
title_full | Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor |
title_fullStr | Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor |
title_full_unstemmed | Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor |
title_short | Design and Build a Ventilator Tester with a Peak Inspiratory Flow Waveform Display as Validation using the F1031V Sensor |
title_sort | design and build a ventilator tester with a peak inspiratory flow waveform display as validation using the f1031v sensor |
topic | pif, signal, sensor p1031v |
url | http://teknokes.poltekkesdepkes-sby.ac.id/index.php/Teknokes/article/view/472 |
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