Area of research
Computational Mechanics · Mechanics of Materials
Research interest
Research interests include Isogeometric analysis, Fluid–structure interaction, Parametric statistics, Computer science, Coronavirus disease 2019 (COVID-19), and Finite element method.
Simulating the spread of COVID-19 <i>via</i> a spatially-resolved susceptible-exposed-infected-recovered-deceased (SEIRD) model with heterogeneous diffusion.
A curvilinear isogeometric framework for the electromechanical activation of thin muscular tissues
Diffusion–reaction compartmental models formulated in a continuum mechanics framework: application to COVID-19, mathematical analysis, and numerical study
How geometry and anisotropy affect residual strain in host-inclusion systems: Coupling experimental and numerical approaches
Skeleton-stabilized immersogeometric analysis for incompressible viscous flow problems
A framework for designing patient‐specific bioprosthetic heart valves using immersogeometric fluid–structure interaction analysis
HIGAMod: A Hierarchical IsoGeometric Approach for MODel reduction in curved pipes
A patient-specific follow up study of the impact of thoracic endovascular repair (TEVAR) on aortic anatomy and on post-operative hemodynamics.
Dynamic and fluid–structure interaction simulations of bioprosthetic heart valves using parametric design with T-splines and Fung-type material models
A locking-free model for Reissner–Mindlin plates: Analysis and isogeometric implementation via NURBS and triangular NURPS
Patient-specific isogeometric structural analysis of aortic valve closure