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[HTML][HTML] Computational modeling of cardiac electrophysiology and arrhythmogenesis: toward clinical translation
The complexity of cardiac electrophysiology, involving dynamic changes in numerous
components across multiple spatial (from ion channel to organ) and temporal (from …
components across multiple spatial (from ion channel to organ) and temporal (from …
Medical image analysis on left atrial LGE MRI for atrial fibrillation studies: A review
Late gadolinium enhancement magnetic resonance imaging (LGE MRI) is commonly used
to visualize and quantify left atrial (LA) scars. The position and extent of LA scars provide …
to visualize and quantify left atrial (LA) scars. The position and extent of LA scars provide …
Physics-informed neural networks for cardiac activation map**
A critical procedure in diagnosing atrial fibrillation is the creation of electro-anatomic
activation maps. Current methods generate these map**s from interpolation using a few …
activation maps. Current methods generate these map**s from interpolation using a few …
The openCARP simulation environment for cardiac electrophysiology
Abstract Background and Objective: Cardiac electrophysiology is a medical specialty with a
long and rich tradition of computational modeling. Nevertheless, no community standard for …
long and rich tradition of computational modeling. Nevertheless, no community standard for …
[HTML][HTML] A framework for the generation of digital twins of cardiac electrophysiology from clinical 12-leads ECGs
Abstract Cardiac digital twins (Cardiac Digital Twin (CDT) s) of human electrophysiology
(Electrophysiology (EP)) are digital replicas of patient hearts derived from clinical data that …
(Electrophysiology (EP)) are digital replicas of patient hearts derived from clinical data that …
Modeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations
Since myocardial fibers drive the electric signal propagation throughout the myocardium,
accurately modeling their arrangement is essential for simulating heart electrophysiology …
accurately modeling their arrangement is essential for simulating heart electrophysiology …
[HTML][HTML] Electro-mechanical whole-heart digital twins: a fully coupled multi-physics approach
T Gerach, S Schuler, J Fröhlich, L Lindner… - Mathematics, 2021 - mdpi.com
Mathematical models of the human heart are evolving to become a cornerstone of precision
medicine and support clinical decision making by providing a powerful tool to understand …
medicine and support clinical decision making by providing a powerful tool to understand …
Predicting atrial fibrillation recurrence by combining population data and virtual cohorts of patient-specific left atrial models
Background: Current ablation therapy for atrial fibrillation is suboptimal, and long-term
response is challenging to predict. Clinical trials identify bedside properties that provide only …
response is challenging to predict. Clinical trials identify bedside properties that provide only …
Cell to whole organ global sensitivity analysis on a four-chamber heart electromechanics model using Gaussian processes emulators
Cardiac pump function arises from a series of highly orchestrated events across multiple
scales. Computational electromechanics can encode these events in physics-constrained …
scales. Computational electromechanics can encode these events in physics-constrained …
[HTML][HTML] Simulating ventricular systolic motion in a four-chamber heart model with spatially varying robin boundary conditions to model the effect of the pericardium
The pericardium affects cardiac motion by limiting epicardial displacement normal to the
surface. In computational studies, it is important for the model to replicate realistic motion, as …
surface. In computational studies, it is important for the model to replicate realistic motion, as …