Area of research
Cardiology and Cardiovascular Medicine · Biomedical Engineering
Research interest
Research interests include Cardiac electrophysiology and arrhythmias, Cardiomyopathy and Myosin Studies, Cardiovascular Function and Risk Factors, and Elasticity and Material Modeling.
Statistical Atlas-Based Surrogate Model of Biventricular Wall Mechanics
Neural implicit heart coordinates: 3D cardiac shape reconstruction from sparse segmentations.
Human Variant in the Cardiac Troponin I Switch Domain Causes Diastolic Dysfunction in a Novel Mouse Model.
A Pediatric Cardiac Shape Atlas: Insights into the Structure of Young Healthy Hearts
Impact of artificial intelligence arrhythmia mapping on time to first ablation, procedure duration, and fluoroscopy use
Macrophages on the run: Exercise balances macrophage polarization for improved health
Network model of skeletal muscle cell signalling predicts differential responses to endurance and resistance exercise training.
Multiscale modeling shows how 2'-deoxy-ATP rescues ventricular function in heart failure.
A universal biventricular coordinate system incorporating valve annuli: Validation in congenital heart disease
Differential sensitivity to longitudinal and transverse stretch mediates transcriptional responses in mouse neonatal ventricular myocytes.
Multiscale modeling and analysis in biophysics
Multiscale modeling and analysis in biophysics
NetSci: A Library for High Performance Biomolecular Simulation Network Analysis Computation
Multiscale Modeling of Heart Disease and Musculoskeletal Performance
Plakophilin 2 gene therapy prevents and rescues arrhythmogenic right ventricular cardiomyopathy in a mouse model harboring patient genetics
A deep learning approach for fully automated cardiac shape modeling in tetralogy of Fallot.
Multiscale computational modeling of the effects of 2'-deoxy-ATP on cardiac muscle calcium handling.
How can AI accelerate advances in physiology?
Forward-Solution Noninvasive Computational Arrhythmia Mapping: The VMAP Study.
Biomechanical signals regulating the structure of the heart
Cardiac cell type–specific gene regulatory programs and disease risk association
Three-dimensional transistor arrays for intra- and inter-cellular recording
Atlas-based methods for efficient characterization of patient-specific ventricular activation patterns
Research Priorities for Heart Failure With Preserved Ejection Fraction
Direct 3D bioprinting of cardiac micro-tissues mimicking native myocardium
Prolonged Exposure to Microgravity Reduces Cardiac Contractility and Initiates Remodeling in Drosophila
Modulating the tension-time integral of the cardiac twitch prevents dilated cardiomyopathy in murine hearts
Modulating the tension-time integral of the cardiac twitch prevents dilated cardiomyopathy in murine hearts
Improved compressed sensing and super-resolution of cardiac diffusion MRI with structure-guided total variation.
Quantification of model and data uncertainty in a network analysis of cardiac myocyte mechanosignalling
MSM: Multi-scale modeling of the mouse heart: from genotype to phenotype
Bioengineering Analysis of Three-Dimensional Electromechanical Interactions in the Heart
Bioengineering Analysis of Three-Dimensional Electromechanical Interactions in the Heart
Presidential Young Investigators Award - Three-Dimensional Mechanics & Electrical Dynamics of the Heart