Integration of Surrogate Huxley Muscle Model into Finite Element Solver for Simulation of the Cardiac Cycle

B Milicevic, V Simic, M Milosevic… - 2022 44th Annual …, 2022 - ieeexplore.ieee.org
Clinicians can use biomechanical simulations of cardiac functioning to evaluate various real
and fictional events. Our present understanding of the molecular processes behind muscle …

A computational model of the left ventricle–application in cardiomyopathy disease

M Milosevic, B Milicevic, V Simic, M Kojic, N Filipovic - 2023 - scidar.kg.ac.rs
Cardiomyopathy or structural and functional abnormalities of the ventricular myocardium is a
common cardiac disease. It can be commonly classified as hypertrophic (HCM) and dilated …

Biocompatibilità chimica e meccanica di matrice extracellulare per l'ingegnerizzazione del miocardio

B BALDAN - thesis.unipd.it
Le malattie cardiovascolari sono responsabili di un terzo delle morti globali e tra queste ben
l'85% sono causate da ictus, patologie e disfunzioni del miocardio. Poiché il miocardio non …

Computational model for simulation of left ventricle behaviour during heart beat

M Milosevic, B Milicevic, V Simic… - 2021 IEEE 21st …, 2021 - ieeexplore.ieee.org
The heart is a complex organ which produces mechanical force needed for the blood flow.
Electrical signals are transformed into active stresses which contract the heart muscle and …

Semi-Automatic Left Ventricle Model Generation

B Milićević, M Milošević, V Simić… - 2021 IEEE 21st …, 2021 - ieeexplore.ieee.org
Most cardiac diseases and disorders occur in the left ventricle. Numerical methods can give
an insight into the mechanical response of the left ventricle under different conditions, before …