Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage

One of the key tasks in the development of mechanical circulatory support pump is to take into account its interaction with blood components and their corresponding damage. Within the framework of this study, numerical modeling of the pump operation in different modes is carried out and an assessm...

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Main Authors: M. S. Isaeva, A. I. Petrov, Ye. P. Banin
Format: Article
Language:English
Published: Omsk State Technical University, Federal State Budgetary Educational Institution of Higher Education 2024-12-01
Series:Омский научный вестник: Серия "Авиационно-ракетное и энергетическое машиностроение"
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Online Access:https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2024/%D0%A2.8,%20%E2%84%964%20(%D0%90%D0%A0%D0%B8%D0%AD%D0%9C)/46-53%20%D0%98%D1%81%D0%B0%D0%B5%D0%B2%D0%B0%20%D0%9C.%20%D0%A1.,%20%D0%9F%D0%B5%D1%82%D1%80%D0%BE%D0%B2%20%D0%90.%20%D0%98.,%20%D0%91%D0%B0%D0%BD%D0%B8%D0%BD%20%D0%95.%20%D0%9F..pdf
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author M. S. Isaeva
A. I. Petrov
Ye. P. Banin
author_facet M. S. Isaeva
A. I. Petrov
Ye. P. Banin
author_sort M. S. Isaeva
collection DOAJ
description One of the key tasks in the development of mechanical circulatory support pump is to take into account its interaction with blood components and their corresponding damage. Within the framework of this study, numerical modeling of the pump operation in different modes is carried out and an assessment of the corresponding change in the values of hemolysis and thrombosis is made. It is found that the most dangerous operating modes also change depending on the parameter under consideration: hemolysis demonstrated the greatest dependence on rotation rate, thrombosis — on flow rate. It is also noted that regardless of the damage parameter taken into account, the greatest contribution to blood damage is made by volute, but the balance between the contribution of the pump elements vary depending on the damage parameter under consideration. The obtained results demonstrate that in order to create a safe mechanical circulatory support pump, during its design and optimization process it is necessary to take into account both hemolysis and thrombosis, as well as the dynamics of system operation.
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institution Kabale University
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language English
publishDate 2024-12-01
publisher Omsk State Technical University, Federal State Budgetary Educational Institution of Higher Education
record_format Article
series Омский научный вестник: Серия "Авиационно-ракетное и энергетическое машиностроение"
spelling doaj-art-80947252ea2441b2a2a8284cbc7f1d102025-01-13T05:26:59ZengOmsk State Technical University, Federal State Budgetary Educational Institution of Higher EducationОмский научный вестник: Серия "Авиационно-ракетное и энергетическое машиностроение"2588-03732587-764X2024-12-0184465310.25206/2588-0373-2024-8-4-46-53Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damageM. S. Isaeva0https://orcid.org/0000-0001-5954-2320A. I. Petrov1https://orcid.org/0000-0001-8048-8170Ye. P. Banin2https://orcid.org/0000-0002-7006-2990Bauman Moscow State Technical UniversityBauman Moscow State Technical UniversityNational Research Center «Kurchatov Institute»One of the key tasks in the development of mechanical circulatory support pump is to take into account its interaction with blood components and their corresponding damage. Within the framework of this study, numerical modeling of the pump operation in different modes is carried out and an assessment of the corresponding change in the values of hemolysis and thrombosis is made. It is found that the most dangerous operating modes also change depending on the parameter under consideration: hemolysis demonstrated the greatest dependence on rotation rate, thrombosis — on flow rate. It is also noted that regardless of the damage parameter taken into account, the greatest contribution to blood damage is made by volute, but the balance between the contribution of the pump elements vary depending on the damage parameter under consideration. The obtained results demonstrate that in order to create a safe mechanical circulatory support pump, during its design and optimization process it is necessary to take into account both hemolysis and thrombosis, as well as the dynamics of system operation.https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2024/%D0%A2.8,%20%E2%84%964%20(%D0%90%D0%A0%D0%B8%D0%AD%D0%9C)/46-53%20%D0%98%D1%81%D0%B0%D0%B5%D0%B2%D0%B0%20%D0%9C.%20%D0%A1.,%20%D0%9F%D0%B5%D1%82%D1%80%D0%BE%D0%B2%20%D0%90.%20%D0%98.,%20%D0%91%D0%B0%D0%BD%D0%B8%D0%BD%20%D0%95.%20%D0%9F..pdfcfdcentrifugal pumphemolysisthrombosisoperation modeshear stressblood
spellingShingle M. S. Isaeva
A. I. Petrov
Ye. P. Banin
Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
Омский научный вестник: Серия "Авиационно-ракетное и энергетическое машиностроение"
cfd
centrifugal pump
hemolysis
thrombosis
operation mode
shear stress
blood
title Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
title_full Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
title_fullStr Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
title_full_unstemmed Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
title_short Influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
title_sort influence of the extracorporeal membrane oxygenation system centrifugal pump operation mode on blood damage
topic cfd
centrifugal pump
hemolysis
thrombosis
operation mode
shear stress
blood
url https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2024/%D0%A2.8,%20%E2%84%964%20(%D0%90%D0%A0%D0%B8%D0%AD%D0%9C)/46-53%20%D0%98%D1%81%D0%B0%D0%B5%D0%B2%D0%B0%20%D0%9C.%20%D0%A1.,%20%D0%9F%D0%B5%D1%82%D1%80%D0%BE%D0%B2%20%D0%90.%20%D0%98.,%20%D0%91%D0%B0%D0%BD%D0%B8%D0%BD%20%D0%95.%20%D0%9F..pdf
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