Patient-specific modeling of left ventricular electromechanics as a driver for haemodynamic analysis
EP Europace Journal

Abstract
Models of blood flow in the left ventricle (LV) and aorta are an important tool for analysing the interplay between LV deformation and flow patterns. Typically, image-based kinematic models describing endocardial motion are used as an input to blood flow simulations. While such models are suitable for analysing the hemodynamic
EM models of the LV and aortic root were created for four pediatric patients treated for either aortic coarctation or aortic valve disease. Using MRI, ECG and invasive pressure recordings, anatomy as well as electrophysiological, mechanical and circulatory model components were personalized.
The implemented modeling pipeline was highly automated and allowed model construction and execution of simulations of a patient’s heartbeat within 1 day. All models reproduced clinical data with acceptable accuracy.
Using the developed modeling workflow, the use of EM LV models as driver of fluid flow simulations is becoming feasible. While EM models are costly to construct, they constitute an important and nontrivial step towards fully coupled electro-mechano-fluidic (EMF) models and show promise as a tool for predicting the response to interventions which affect afterload conditions.
Contributors

Christoph M. Augustin
Author

Andrew Crozier
Author

Aurel Neic
Author

Anton J. Prassl
Author

Elias Karabelas
Author

Tiago Ferreira da Silva
Author

Joao F. Fernandes
Author

Fernando Campos
Author

Titus Kuehne
Author
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