Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Receptor, Ligand (biochemistry), Computer science, Cell biology, Cell cycle, and E2F.
Classical structural identifiability methodology applied to low-dimensional dynamic systems in receptor theory
Correction to: Classical structural identifiability methodology applied to low-dimensional dynamic systems in receptor theory
Insights into the dynamics of ligand-induced dimerisation via mathematical modelling and analysis
Exact solutions and equi-dosing regimen regions for multi-dose pharmacokinetics models with transit compartments
Modelling and simulation of biased agonism dynamics at a G protein-coupled receptor
A two‐state model for the kinetics of competitive radioligand binding
Ligand Binding Dynamics for Pre-dimerised G Protein-Coupled Receptor Homodimers: Linear Models and Analytical Solutions
Dynamic NF-κB and E2F interactions control the priority and timing of inflammatory signalling and cell proliferation
Author response: Dynamic NF-κB and E2F interactions control the priority and timing of inflammatory signalling and cell proliferation
A method of ‘speed coefficients’ for biochemical model reduction applied to the NF- $$\upkappa $$ κ B system
Modelling the impact of plant shoot architecture on leaf cooling: coupled heat and mass transfer simulations
European Conference on Mathematical and Theoretical Biology 2014cited by 0position: first