Area of research
Cardiology and Cardiovascular Medicine · Molecular Biology
Research interest
Research interests include Cardiac electrophysiology and arrhythmias, Ion channel regulation and function, Neuroscience and Neural Engineering, and Neuroscience and Neuropharmacology Research.
Na<sup>+</sup>/Ca<sup>2+</sup> exchange and Na<sup>+</sup>/K<sup>+</sup>‐ATPase in the heart
Neuronal Na+ channel blockade suppresses arrhythmogenic diastolic Ca2+ release
Remodeling of the sarcomeric cytoskeleton in cardiac ventricular myocytes during heart failure and after cardiac resynchronization therapy
A modified local control model for Ca2+ transients in cardiomyocytes: Junctional flux is accompanied by release from adjacent non-junctional RyRs
Na/Ca exchange and contraction of the heart
Modeling Calcium Dynamics in Rabbit Ventricular Myocytes with Several Realistic T-Tubules Subject to Detubulation
Subcellular Structures and Function of Myocytes Impaired During Heart Failure Are Restored by Cardiac Resynchronization Therapy
Modeling Effects of L-Type Ca2+ Current and Na+-Ca2+ Exchanger on Ca2+ Trigger Flux in Rabbit Myocytes with Realistic T-Tubule Geometries
Mechanical modulation of the transverse tubular system of ventricular cardiomyocytes
Experimental Study of Formation of Open-framework Gravels
Study of Modern Gravelly Braided River Deposits with Special Reference to Spatial Variations in Porosity and Permeability
Evolution of Miocene Fluvial Environments in Northern Pakistan
Evolution of Miocene Fluvial Environments in Northern Pakistan
Collaborative Research: Palynostratigraphic Zonation and a Palynomorph Sedimentation in the Catskill Magnafacies of NewYork State
Collaborative Research on Flow and Sedimentary Processes in the Calamus River
U.S.-United Kingdom Cooperative Science: Turbulent Flow, Sediment Transport and Bedform Stability (Fluvial Sedimentology)
Collaborative Research on Flow and Sedimentary Processes in A Low-Sinuosity River