Title of article :
Computational Analysis of Pumping Efficacy of a Left Ventricular Assist Device according to Cannulation Site in Heart Failure with Valvular Regurgitation
Author/Authors :
Heikhmakhtiar, Aulia Khamas Department of IT Convergence Engineering - Kumoh National Institute of Technology, Republic of Korea , Lim, Ki Moo Department of IT Convergence Engineering - Kumoh National Institute of Technology, Republic of Korea
Abstract :
Mitral valve regurgitation (MR) causes blood to flow in two directions during contraction of the left ventricle (LV), that is, forward
into the aorta and backward into the left atrium (LA). In aortic valve regurgitation (AR), leakage occurs from the aorta into the LV
during diastole. Our objective is to analyze the contribution of a left ventricular assist device (LVAD) to MR and AR for the following
two different cannulation sites: from the LA to the aorta (LAAO) and from the LV to the aorta (LVAO). Using a computational
method, we simulated three ventricular conditions (normal [HF without valvular regurgitation], 5% MR, and 5% AR) in three
groups (control [no LVAD], LAAO, and LVAO). The results showed that LVAD with LAAO cannulation is appropriate for recovery
of the MR heart, and the LVAD with LVAO cannulation is appropriate for treating the AR heart.
Keywords :
Computational Analysis , Failure , LVAO
Journal title :
Computational and Mathematical Methods in Medicine