Cargando…

An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device

Mechanical ventilator is a machine that is mechanically designed to deliver breathable air in and out of the lungs to provide a breathing mechanism for a patient who is physically unable to breathe, it is an indispensable life-support device in critical care medicine and medical emergencies such as...

Descripción completa

Detalles Bibliográficos
Autores principales: Ige, Ebenezer Olubunmi, Adetunla, Adedotun, Amudipe, Samuel Olufemi, Adeoye, Adeyinka, Glucksberg, Matthew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059433/
https://www.ncbi.nlm.nih.gov/pubmed/35529703
http://dx.doi.org/10.1016/j.heliyon.2022.e09378
_version_ 1784698310016106496
author Ige, Ebenezer Olubunmi
Adetunla, Adedotun
Amudipe, Samuel Olufemi
Adeoye, Adeyinka
Glucksberg, Matthew
author_facet Ige, Ebenezer Olubunmi
Adetunla, Adedotun
Amudipe, Samuel Olufemi
Adeoye, Adeyinka
Glucksberg, Matthew
author_sort Ige, Ebenezer Olubunmi
collection PubMed
description Mechanical ventilator is a machine that is mechanically designed to deliver breathable air in and out of the lungs to provide a breathing mechanism for a patient who is physically unable to breathe, it is an indispensable life-support device in critical care medicine and medical emergencies such as scenarios during the COVID-19 pandemic. This research presents a model design of the pneumatic circuit that is electronically controlled, by using computer-aided pneumatic rig over selected 5/3, 5/2, 3/2 solenoid gating valves, the performance of these valves must be investigated to ascertain the most appropriate valve to be used for the electro-pneumatic mechanical ventilator. An elaborate parametric investigation reported for volume-controlled ventilators illustrate the influences of key parameters on the dynamics of the ventilated respiratory system. This study presents the linearity of tidal volume, peak pressure and lung compliance for the parameters considered. However, the maximum pressure of the ventilation device increases slowly when the tidal volumes exceed 600 ml. In addition, influence of evacuation time of the ventilator predicted over high throughput in time regimes of 1 s; 1.2 s; 1.4 s; 1.6 s, and 1.8 s showed that the pressure platform in the pipe might not appear if the exhaust time of the ventilator is less than 1.6 s. The 5/2 solenoid valve was considered the best with consistent flowrate. The archetypal model of the pneumatic circuit developed in this research could find vital application in the design of patient-interfacing devices particularly in ventilators and neonatal incubator.
format Online
Article
Text
id pubmed-9059433
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-90594332022-05-02 An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device Ige, Ebenezer Olubunmi Adetunla, Adedotun Amudipe, Samuel Olufemi Adeoye, Adeyinka Glucksberg, Matthew Heliyon Research Article Mechanical ventilator is a machine that is mechanically designed to deliver breathable air in and out of the lungs to provide a breathing mechanism for a patient who is physically unable to breathe, it is an indispensable life-support device in critical care medicine and medical emergencies such as scenarios during the COVID-19 pandemic. This research presents a model design of the pneumatic circuit that is electronically controlled, by using computer-aided pneumatic rig over selected 5/3, 5/2, 3/2 solenoid gating valves, the performance of these valves must be investigated to ascertain the most appropriate valve to be used for the electro-pneumatic mechanical ventilator. An elaborate parametric investigation reported for volume-controlled ventilators illustrate the influences of key parameters on the dynamics of the ventilated respiratory system. This study presents the linearity of tidal volume, peak pressure and lung compliance for the parameters considered. However, the maximum pressure of the ventilation device increases slowly when the tidal volumes exceed 600 ml. In addition, influence of evacuation time of the ventilator predicted over high throughput in time regimes of 1 s; 1.2 s; 1.4 s; 1.6 s, and 1.8 s showed that the pressure platform in the pipe might not appear if the exhaust time of the ventilator is less than 1.6 s. The 5/2 solenoid valve was considered the best with consistent flowrate. The archetypal model of the pneumatic circuit developed in this research could find vital application in the design of patient-interfacing devices particularly in ventilators and neonatal incubator. Elsevier 2022-05-02 /pmc/articles/PMC9059433/ /pubmed/35529703 http://dx.doi.org/10.1016/j.heliyon.2022.e09378 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Ige, Ebenezer Olubunmi
Adetunla, Adedotun
Amudipe, Samuel Olufemi
Adeoye, Adeyinka
Glucksberg, Matthew
An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title_full An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title_fullStr An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title_full_unstemmed An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title_short An archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
title_sort archetypal model of a breathable air-circuit in an electro-pneumatic ventilator device
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9059433/
https://www.ncbi.nlm.nih.gov/pubmed/35529703
http://dx.doi.org/10.1016/j.heliyon.2022.e09378
work_keys_str_mv AT igeebenezerolubunmi anarchetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT adetunlaadedotun anarchetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT amudipesamuelolufemi anarchetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT adeoyeadeyinka anarchetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT glucksbergmatthew anarchetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT igeebenezerolubunmi archetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT adetunlaadedotun archetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT amudipesamuelolufemi archetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT adeoyeadeyinka archetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice
AT glucksbergmatthew archetypalmodelofabreathableaircircuitinanelectropneumaticventilatordevice