Analysis of intra-aortic balloon pump model with ovine myocardial infarction. 2009

Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
Department of Mechanical Engineering, Alberta University, Edmonton, Canada.

OBJECTIVE In this study, we have tried to model the effects of intra-aortic balloon pump (IABP) on myocardial infarction (MI) using the standardized data of MI in sheep which was obtained by ligation of the left anterior descending coronary artery. METHODS Mathematical model of whole cardiovascular system was presented in accordance to the arterial tree. The lumped parameter model was primarily obtained for a rigid vessel regarding the vessel diameter. In this study, the proper lumped model of every vessel was obtained by incorporating the rigid vessel lumped model into the capacitance as a compliance of the vessel. Intra-aortic balloon pump was modeled with the hemodynamic parameters of the aorta. It was assumed that balloon pump inflates at the beginning of the diastole and deflates near the beginning of the next systole. RESULTS During balloon pumping, the vessel diameter variation function counter pulsates sinusoidally with the same period of the cardiac cycle. End systolic pressure and end diastolic pressure decreases along with hemodynamic flow optimized through systemic arteries due to balloon pumping in diastole. It has been shown that the blood flow in subclavian artery increases as well. Moreover, the cardiac work keeps low, which prone to lower oxygen consumption. The results of modeling are in good agreement with IABP documentation. CONCLUSIONS The presented model is a useful tool for studying of the cardiovascular system pathology and the presented modeling data are in good agreement with the experimental ones.

UI MeSH Term Description Entries
D007423 Intra-Aortic Balloon Pumping Counterpulsation in which a pumping unit synchronized with the patient's electrocardiogram rapidly fills a balloon in the aorta with helium or carbon dioxide in early diastole and evacuates the balloon at the onset of systole. As the balloon inflates, it raises aortic diastolic pressure, and as it deflates, it lowers aortic systolic pressure. The result is a decrease in left ventricular work and increased myocardial and peripheral perfusion. Pumping, Intra-Aortic Balloon,Intraaortic Balloon Pumping,Balloon Pumping, Intra-Aortic,Balloon Pumping, Intraaortic,Intra Aortic Balloon Pumping,Pumping, Intra Aortic Balloon,Pumping, Intraaortic Balloon
D008962 Models, Theoretical Theoretical representations that simulate the behavior or activity of systems, processes, or phenomena. They include the use of mathematical equations, computers, and other electronic equipment. Experimental Model,Experimental Models,Mathematical Model,Model, Experimental,Models (Theoretical),Models, Experimental,Models, Theoretic,Theoretical Study,Mathematical Models,Model (Theoretical),Model, Mathematical,Model, Theoretical,Models, Mathematical,Studies, Theoretical,Study, Theoretical,Theoretical Model,Theoretical Models,Theoretical Studies
D009203 Myocardial Infarction NECROSIS of the MYOCARDIUM caused by an obstruction of the blood supply to the heart (CORONARY CIRCULATION). Cardiovascular Stroke,Heart Attack,Myocardial Infarct,Cardiovascular Strokes,Heart Attacks,Infarct, Myocardial,Infarction, Myocardial,Infarctions, Myocardial,Infarcts, Myocardial,Myocardial Infarctions,Myocardial Infarcts,Stroke, Cardiovascular,Strokes, Cardiovascular
D001783 Blood Flow Velocity A value equal to the total volume flow divided by the cross-sectional area of the vascular bed. Blood Flow Velocities,Flow Velocities, Blood,Flow Velocity, Blood,Velocities, Blood Flow,Velocity, Blood Flow
D002320 Cardiovascular Physiological Phenomena Processes and properties of the CARDIOVASCULAR SYSTEM as a whole or of any of its parts. Cardiovascular Physiologic Processes,Cardiovascular Physiological Processes,Cardiovascular Physiology,Cardiovascular Physiological Concepts,Cardiovascular Physiological Phenomenon,Cardiovascular Physiological Process,Physiology, Cardiovascular,Cardiovascular Physiological Concept,Cardiovascular Physiological Phenomenas,Concept, Cardiovascular Physiological,Concepts, Cardiovascular Physiological,Phenomena, Cardiovascular Physiological,Phenomenon, Cardiovascular Physiological,Physiologic Processes, Cardiovascular,Physiological Concept, Cardiovascular,Physiological Concepts, Cardiovascular,Physiological Phenomena, Cardiovascular,Physiological Phenomenon, Cardiovascular,Physiological Process, Cardiovascular,Physiological Processes, Cardiovascular,Process, Cardiovascular Physiological,Processes, Cardiovascular Physiologic,Processes, Cardiovascular Physiological
D003971 Diastole Post-systolic relaxation of the HEART, especially the HEART VENTRICLES. Diastoles
D004195 Disease Models, Animal Naturally-occurring or experimentally-induced animal diseases with pathological processes analogous to human diseases. Animal Disease Model,Animal Disease Models,Disease Model, Animal
D006439 Hemodynamics The movement and the forces involved in the movement of the blood through the CARDIOVASCULAR SYSTEM. Hemodynamic
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012756 Sheep Any of the ruminant mammals with curved horns in the genus Ovis, family Bovidae. They possess lachrymal grooves and interdigital glands, which are absent in GOATS. Ovis,Sheep, Dall,Dall Sheep,Ovis dalli

Related Publications

Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
January 2016, International journal of cardiology,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
June 2015, JAMA internal medicine,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
August 1978, Thorax,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
May 2013, Zhonghua xin xue guan bing za zhi,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
April 2016, Revista portuguesa de cardiologia : orgao oficial da Sociedade Portuguesa de Cardiologia = Portuguese journal of cardiology : an official journal of the Portuguese Society of Cardiology,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
January 2014, PloS one,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
June 1983, Chest,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
March 2015, The Cochrane database of systematic reviews,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
July 2011, The Cochrane database of systematic reviews,
Mona Abdolrazaghi, and Mahdi Navidbakhsh, and Kamran Hassani, and Shahram Rabbani, and Hossein Ahmadi
August 1975, The Canadian nurse,
Copied contents to your clipboard!