Area of research
Cardiology and Cardiovascular Medicine · Computer Networks and Communications
Research interest
Research interests include Cardiac electrophysiology and arrhythmias, Nonlinear Dynamics and Pattern Formation, Ion channel regulation and function, and stochastic dynamics and bifurcation.
Identifying wave sources using flow velocity method in excitable media
Digital twin for sex-specific identification of class III antiarrhythmic drugs based on in vitro measurements, computer models, and machine learning tools.
Analysis and generation of the fibrosis textures based on histology data of the human hearts with non-ischemic cardiomyopathy.
Unpinning and elimination of spiral waves and turbulence through local optogenetical illumination
'Trapped re-entry' as source of acute focal atrial arrhythmias.
Self-Organized Target Wave Chimeras in Reaction-Diffusion Media
Computer based method for identification of fibrotic scars from electrograms and local activation times on the epi- and endocardial surfaces of the ventricles.
Reordering and synchronization of electrical turbulence in cardiac tissue through global and partial optogenetical illumination
Numerical study of the drift of scroll waves by optical feedback in cardiac tissue
Mechanistic insight into the functional role of human sinoatrial node conduction pathways and pacemaker compartments heterogeneity: A computer model analysis.
Scroll Waves and Filaments in Excitable Media of Higher Spatial Dimension
Meander pattern of spiral wave and the spatial distribution of its cycle length
Spiral wave drift under optical feedback in cardiac tissue
Control of spiral waves in optogenetically modified cardiac tissue by periodic optical stimulation
Cx43 hemichannel microdomain signaling at the intercalated disc enhances cardiac excitability
Cx43 hemichannel microdomain signaling at the intercalated disc enhances cardiac excitability.
Mathematical modelling of the mechano-electric coupling in the human cardiomyocyte electrically connected with fibroblasts
High-frequency pacing of scroll waves in a three-dimensional slab model of cardiac tissue
Finding type and location of the source of cardiac arrhythmias from the averaged flow velocity field using the determinant-trace method
Scroll wave with negative filament tension in a model of the left ventricle of the human heart and its overdrive pacing
Multiparametric analysis of geometric features of fibrotic textures leading to cardiac arrhythmias.
Rotational Activity Around an Obstacle in 2D Cardiac Tissue in Presence of Cellular Heterogeneity
Rotational Activity around an Obstacle in 2D Cardiac Tissue in Presence of Cellular Heterogeneity
Anatomical Model of Rat Ventricles to Study Cardiac Arrhythmias under Infarction Injury
Period of Arrhythmia Anchored around an Infarction Scar in an Anatomical Model of the Human Ventricles
Numerical methods for the detection of phase defect structures in excitable media
Creation and application of virtual patient cohorts of heart models
Creation and application of virtual patient cohorts of heart models.
Considering discrepancy when calibrating a mechanistic electrophysiology model
An audit of uncertainty in multi-scale cardiac electrophysiology models