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Computational Quantification of the Cardiac Energy Consumption during Intra-Aortic Balloon Pumping Using a Cardiac Electromechanics Model
Journal of Korean Medical Science ; : 93-99, 2013.
Artículo en Inglés | WPRIM | ID: wpr-188339
ABSTRACT
To quantify the reduction in workload during intra-aortic balloon pump (IABP) therapy, indirect parameters are used, such as the mean arterial pressure during diastole, product of heart rate and peak systolic pressure, and pressure-volume area. Therefore, we investigated the cardiac energy consumption during IABP therapy using a cardiac electromechanics model. We incorporated an IABP function into a previously developed electromechanical model of the ventricle with a lumped model of the circulatory system and investigated the cardiac energy consumption at different IABP inflation volumes. When the IABP was used at inflation level 5, the cardiac output and stroke volume increased 11%, the ejection fraction increased 21%, the stroke work decreased 1%, the mean arterial pressure increased 10%, and the ATP consumption decreased 12%. These results show that although the ATP consumption is decreased significantly, stroke work is decreased only slightly, which indicates that the IABP helps the failed ventricle to pump blood efficiently.
Asunto(s)

Texto completo: Disponible Índice: WPRIM (Pacífico Occidental) Asunto principal: Volumen Sistólico / Gasto Cardíaco / Adenosina Trifosfato / Función Ventricular Izquierda / Presión Arterial / Insuficiencia Cardíaca / Frecuencia Cardíaca / Contrapulsador Intraaórtico / Modelos Teóricos Límite: Humanos Idioma: Inglés Revista: Journal of Korean Medical Science Año: 2013 Tipo del documento: Artículo

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Texto completo: Disponible Índice: WPRIM (Pacífico Occidental) Asunto principal: Volumen Sistólico / Gasto Cardíaco / Adenosina Trifosfato / Función Ventricular Izquierda / Presión Arterial / Insuficiencia Cardíaca / Frecuencia Cardíaca / Contrapulsador Intraaórtico / Modelos Teóricos Límite: Humanos Idioma: Inglés Revista: Journal of Korean Medical Science Año: 2013 Tipo del documento: Artículo