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Mathematical Modeling of the Coronary Circulation During Cardiac Pacing and Tachycardia

Gamilov T. M., Lyan F., Simakov S. S.
Lobachevskii Journal of Mathematics
Vol.40, Issue4, P. 448-458
Опубликовано: 2019
Тип ресурса: Статья

DOI:10.1134/S1995080219040073

Аннотация:
In this work, we consider blood flow in the coronary arteries during the abnormal heart rhythm conditions due to the cardiac pacing and pathological type of the tachycardia. We adapt the ID model of haemodynamics to the coronary circulation conditions, which are characterized by the periodic vessels contraction. The range of the convergence of the Newton’s method is studied for the boundary conditions at the outlets of the terminal vessels. Simulation of the cardiac pacing conditions supports the hypothesis, that right ventricle pacing produce the most pronounced effect to the coronary flow. We also observe, that 0.03 s delay during right ventricular pacing produce substantial increase of the systolic blood flow in the left coronary artery. Simulations of the tachycardia conditions show, that the ratio between systolic and diastolic phase is a critical parameter for the possible ischemia development. We also observe, that the supraventricular tachycardia in paediatric patients results
Ключевые слова:
coronary blood flow; ID blood flow; pacemaker; tachycardia
Язык текста: Английский
ISSN: 1995-0802
Gamilov T. M. Timur Mudarisovich 1988-
Lyan F. Fuyu 1978-
Simakov S. S. Sergej Sergeevich 1980-
Гамилов Т. М. Тимур Мударисович 1988-
Лян Ф. Фую 1978-
Симаков С. С. Сергей Сергеевич 1980-
Mathematical Modeling of the Coronary Circulation During Cardiac Pacing and Tachycardia
Текст визуальный непосредственный
Lobachevskii Journal of Mathematics
Pleiades Publishing, Ltd.
Vol.40, Issue4 P. 448-458
2019
Статья
coronary blood flow ID blood flow pacemaker tachycardia
In this work, we consider blood flow in the coronary arteries during the abnormal heart rhythm conditions due to the cardiac pacing and pathological type of the tachycardia. We adapt the ID model of haemodynamics to the coronary circulation conditions, which are characterized by the periodic vessels contraction. The range of the convergence of the Newton’s method is studied for the boundary conditions at the outlets of the terminal vessels. Simulation of the cardiac pacing conditions supports the hypothesis, that right ventricle pacing produce the most pronounced effect to the coronary flow. We also observe, that 0.03 s delay during right ventricular pacing produce substantial increase of the systolic blood flow in the left coronary artery. Simulations of the tachycardia conditions show, that the ratio between systolic and diastolic phase is a critical parameter for the possible ischemia development. We also observe, that the supraventricular tachycardia in paediatric patients results