Area of research
Cell Biology · Modeling and Simulation
Research interest
Research interests include Cellular Mechanics and Interactions, Mathematical Biology Tumor Growth, Cancer Cells and Metastasis, and 3D Printing in Biomedical Research.
Endothelium and Subendothelial Matrix Mechanics Modulate Cancer Cell Transendothelial Migration
Feedback between mechanosensitive signaling and active forces governs endothelial junction integrity
Integrated in silico and 3D in vitro model of macrophage migration in response to physical and chemical factors in the tumor microenvironment
Balance of mechanical forces drives endothelial gap formation and may facilitate cancer and immune-cell extravasation
Are the Effects of Independent Biophysical Factors Linearly Additive? A 3D Tumor Migration Model
Solid dissolution in a fluid solvent is characterized by the interplay of surface area-dependent diffusion and physical fragmentation
Computational model of wound healing: EGF secreted by fibroblasts promotes delayed re-epithelialization of epithelial keratinocytes
Dynamic interplay between tumour, stroma and immune system can drive or prevent tumour progression
Integrated Analysis of Intracellular Dynamics of MenaINV Cancer Cells in a 3D Matrix
Impact of the physical microenvironment on tumor progression and metastasis
A Computational Model of YAP/TAZ Mechanosensing
Controlling uncertainty in aptamer selection
Single-Cell Migration in Complex Microenvironments: Mechanics and Signaling Dynamics
Hybrid approaches for multiple-species stochastic reaction–diffusion models