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Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study

The present computational study investigates the effects of an epicardial support pressure mimicking a heart support system without direct blood contact. We chose restrictive cardiomyopathy as a model for a diseased heart. By changing one parameter representing the amount of fibrosis, this model all...

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Autores principales: Martonová, Denisa, Holz, David, Brackenhammer, Dorothea, Weyand, Michael, Leyendecker, Sigrid, Alkassar, Muhannad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9299250/
https://www.ncbi.nlm.nih.gov/pubmed/35872914
http://dx.doi.org/10.3389/fcvm.2022.850274
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author Martonová, Denisa
Holz, David
Brackenhammer, Dorothea
Weyand, Michael
Leyendecker, Sigrid
Alkassar, Muhannad
author_facet Martonová, Denisa
Holz, David
Brackenhammer, Dorothea
Weyand, Michael
Leyendecker, Sigrid
Alkassar, Muhannad
author_sort Martonová, Denisa
collection PubMed
description The present computational study investigates the effects of an epicardial support pressure mimicking a heart support system without direct blood contact. We chose restrictive cardiomyopathy as a model for a diseased heart. By changing one parameter representing the amount of fibrosis, this model allows us to investigate the impairment in a diseased left ventricle, both during diastole and systole. The aim of the study is to determine the temporal course and value of the support pressure that leads to a normalization of the cardiac parameters in diseased hearts. These are quantified via the end-diastolic pressure, end-diastolic volume, end-systolic volume, and ejection fraction. First, the amount of fibrosis is increased to model diseased hearts at different stages. Second, we determine the difference in the left ventricular pressure between a healthy and diseased heart during a cardiac cycle and apply for the epicardial support as the respective pressure difference. Third, an epicardial support pressure is applied in form of a piecewise constant step function. The support is provided only during diastole, only during systole, or during both phases. Finally, the support pressure is adjusted to reach the corresponding parameters in a healthy rat. Parameter normalization is not possible to achieve with solely diastolic or solely systolic support; for the modeled case with 50% fibrosis, the ejection fraction can be increased by 5% with purely diastolic support and 14% with purely systolic support. However, the ejection fraction reaches the value of the modeled healthy left ventricle (65.6%) using a combination of diastolic and systolic support. The end-diastolic pressure of 13.5 mmHg cannot be decreased with purely systolic support. However, the end-diastolic pressure reaches the value of the modeled healthy left ventricle (7.5 mmHg) with diastolic support as well as with the combination of the diastolic and systolic support. The resulting negative diastolic support pressure is −4.5 mmHg, and the positive systolic support pressure is 90 mmHg. We, thereby, conclude that ventricular support during both diastole and systole is beneficial for normalizing the left ventricular ejection fraction and the end-diastolic pressure, and thus it is a potentially interesting therapy for cardiac insufficiency.
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spelling pubmed-92992502022-07-21 Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study Martonová, Denisa Holz, David Brackenhammer, Dorothea Weyand, Michael Leyendecker, Sigrid Alkassar, Muhannad Front Cardiovasc Med Cardiovascular Medicine The present computational study investigates the effects of an epicardial support pressure mimicking a heart support system without direct blood contact. We chose restrictive cardiomyopathy as a model for a diseased heart. By changing one parameter representing the amount of fibrosis, this model allows us to investigate the impairment in a diseased left ventricle, both during diastole and systole. The aim of the study is to determine the temporal course and value of the support pressure that leads to a normalization of the cardiac parameters in diseased hearts. These are quantified via the end-diastolic pressure, end-diastolic volume, end-systolic volume, and ejection fraction. First, the amount of fibrosis is increased to model diseased hearts at different stages. Second, we determine the difference in the left ventricular pressure between a healthy and diseased heart during a cardiac cycle and apply for the epicardial support as the respective pressure difference. Third, an epicardial support pressure is applied in form of a piecewise constant step function. The support is provided only during diastole, only during systole, or during both phases. Finally, the support pressure is adjusted to reach the corresponding parameters in a healthy rat. Parameter normalization is not possible to achieve with solely diastolic or solely systolic support; for the modeled case with 50% fibrosis, the ejection fraction can be increased by 5% with purely diastolic support and 14% with purely systolic support. However, the ejection fraction reaches the value of the modeled healthy left ventricle (65.6%) using a combination of diastolic and systolic support. The end-diastolic pressure of 13.5 mmHg cannot be decreased with purely systolic support. However, the end-diastolic pressure reaches the value of the modeled healthy left ventricle (7.5 mmHg) with diastolic support as well as with the combination of the diastolic and systolic support. The resulting negative diastolic support pressure is −4.5 mmHg, and the positive systolic support pressure is 90 mmHg. We, thereby, conclude that ventricular support during both diastole and systole is beneficial for normalizing the left ventricular ejection fraction and the end-diastolic pressure, and thus it is a potentially interesting therapy for cardiac insufficiency. Frontiers Media S.A. 2022-07-06 /pmc/articles/PMC9299250/ /pubmed/35872914 http://dx.doi.org/10.3389/fcvm.2022.850274 Text en Copyright © 2022 Martonová, Holz, Brackenhammer, Weyand, Leyendecker and Alkassar. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cardiovascular Medicine
Martonová, Denisa
Holz, David
Brackenhammer, Dorothea
Weyand, Michael
Leyendecker, Sigrid
Alkassar, Muhannad
Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title_full Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title_fullStr Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title_full_unstemmed Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title_short Support Pressure Acting on the Epicardial Surface of a Rat Left Ventricle—A Computational Study
title_sort support pressure acting on the epicardial surface of a rat left ventricle—a computational study
topic Cardiovascular Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9299250/
https://www.ncbi.nlm.nih.gov/pubmed/35872914
http://dx.doi.org/10.3389/fcvm.2022.850274
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