Integrating State-of-the-Art Computational Modeling with Clinical Practice: The Promise of Numerical Methods.- Patient-Specific Modeling of Cardiovascular Dynamics with a Major Role for Adaptation.- Patient-Specific Modeling of Structure and Function of Cardiac Cells.- Studies of Therapeutic Strategies for Atrial Fibrillation Based on a Biophysical Model of the Human Atria.- Patient-Specific Modeling for Critical Care.- Biomechanical Analysis of Abdominal Aortic Aneurysms.- The Cardiac Atlas Project: Towards a Map of the Heart.- In Vivo Myocardial Material Properties and Stress Distributions in Normal and Failing Human Hearts.- Modeling of Whole-Heart Electrophysiology and Mechanics: Toward Patient-Specific Simulations.- Personalized Computational Models of the Heart for Cardiac Resynchronization Therapy.- Patient-Specific Modeling of Hypoxic Response and Microvasculature Dynamics.- A Computational Framework for Patient-Specific Multi-Scale Cardiac Modeling.
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