Related Experiment Video
Updated: Jan 19, 2026

Modeling Neonatal Intraventricular Hemorrhage Through Intraventricular Injection of Hemoglobin
Published on: August 25, 2022
Sensitivity Analysis of a Left Ventricle Model in the Context of Intraventricular Dyssynchrony
Virginie Le Rolle1, Elena Galli2, David Danan2
1Univ Rennes, CHU Rennes, Inserm, LTSI-UMR 1099, 35000, Rennes, France. virginie.lerolle@univ-rennes1.fr.
Abstract:
The objective of the current study was to propose a sensitivity analysis of a 3D left ventricle model in order to assess the influence of parameters on myocardial mechanical dispersion. A finite element model of LV electro-mechanical activity was proposed and a screening method was used to evaluate the sensitivity of model parameters on the standard deviation of time to peak strain. Results highlight the importance of propagation parameters associated with septal and lateral segments activation. Simulated curves were compared to myocardial strains, obtained from echocardiography of one healthy subject and one patient diagnosed with intraventricular dyssynchrony and coronary artery disease. Results show a close match between simulation and clinical strains and illustrate the model ability to reproduce myocardial strains in the context of intraventricular dyssynchrony.
Related Concept Videos
04:51Modeling Neonatal Intraventricular Hemorrhage Through Intraventricular Injection of Hemoglobin
07:57Modeling Neonatal Intraventricular Hemorrhage Through Intraventricular Injection of Hemoglobin
08:18Intracranial Pressure Monitoring In Nontraumatic Intraventricular Hemorrhage Rodent Model
07:38Comprehensive Echocardiographic Assessment of Right Ventricle Function in a Rat Model of Pulmonary Arterial Hypertension
15:263D Modeling of the Lateral Ventricles and Histological Characterization of Periventricular Tissue in Humans and Mouse
04:38Transverse Aortic Arch Banding in Mouse Model: A Minimally Invasive Technique in Mice for Induction of High Pressure in the Left Ventricle

