Area of research
Computational Mechanics · Computer Networks and Communications
Research interest
Research interests include Lattice Boltzmann Simulation Studies, Distributed and Parallel Computing Systems, Blood properties and coagulation, and Cellular Automata and Applications.
Advancing in Silico Clinical Trials for Regulatory Adoption and Innovation.
Carotid single- and dual-layer stents reduce the wall adhesion of platelets by influencing flow and cellular transport
Initial platelet aggregation in the complex shear environment of a punctured vessel model
Building a Fine-Grained Analytical Performance Model for Complex Scientific Simulations
Animal models and animal-free innovations for cardiovascular research: current status and routes to be explored. Consensus document of the ESC Working Group on Myocardial Function and the ESC Working Group on Cellular Biology of the Heart
Utrecht University Repository (Utrecht University) 2022cited by 66position: middle
Animal models and animal-free innovations for cardiovascular research: current status and routes to be explored. Consensus document of the ESC Working Group on Myocardial Function and the ESC Working Group on Cellular Biology of the Heart.
Uncertainty quantification of a three-dimensional in-stent restenosis model with surrogate modelling.
A porous circulation model of the human brain for <i>in silico</i> clinical trials in ischaemic stroke.
Coupling one-dimensional arterial blood flow to three-dimensional tissue perfusion models for <i>in silico</i> trials of acute ischaemic stroke.
Haemodynamic flow conditions at the initiation of high-shear platelet aggregation: a combined <i>in vitro</i> and cellular <i>in silico</i> study.
Reliability and reproducibility in computational science: implementing validation, verification and uncertainty quantification <i>in silico</i>.
Uncertainty quantification patterns for multiscale models
des-ist: A Simulation Framework to Streamline Event-Based In Silico Trials
On the sensitivity analysis of porous finite element models for cerebral perfusion estimation
Two-Way Coupling Between 1D Blood Flow and 3D Tissue Perfusion Models
Uncertainty Quantification of Coupled 1D Arterial Blood Flow and 3D Tissue Perfusion Models Using the INSIST Framework
Easing Multiscale Model Design and Coupling with MUSCLE 3
Computational biomedicine. Part II: organs and systems
A particle-based model for endothelial cell migration under flow conditions.
A Heterogeneous Multi-scale Model for Blood Flow
Red blood cell and platelet diffusivity and margination in the presence of cross-stream gradients in blood flows
Shear thickening of dense suspensions: The role of friction
Identifying the start of a platelet aggregate by the shear rate and the cell-depleted layer
Location-Specific Comparison Between a 3D In-Stent Restenosis Model and Micro-CT and Histology Data from Porcine In Vivo Experiments.
Patterns for High Performance Multiscale Computing
Semi-intrusive multiscale metamodelling uncertainty quantification with application to a model of in-stent restenosis
Multiscale computing for science and engineering in the era of exascale performance.
Multiscale modelling, simulation and computing: from the desktop to the exascale.