Area of research
Pulmonary and Respiratory Medicine · Physiology
Research interest
Research interests include Blood properties and coagulation, Erythrocyte Function and Pathophysiology, Lipid Membrane Structure and Behavior, and Microfluidic and Bio-sensing Technologies.
Deciphering the unique inertial focusing behavior of sperm cells
Fluid Mechanics of Blood Cells and Vesicles Squeezing Through Narrow Constrictions
Bifurcation of equilibrium positions for ellipsoidal particles in inertial shear flows between two walls
A decomposition method for form-finding of circular hybrid cable-truss structures considering self-weight
trans-Endothelial neutrophil migration activates bactericidal function via Piezo1 mechanosensing
Physical mechanisms of red blood cell splenic filtration
Evolution of focused streams for viscoelastic flow in spiral microchannels
Cyclic Mechanical Stresses Alter Erythrocyte Membrane Composition and Microstructure and Trigger Macrophage Phagocytosis
The equilibrium and form-finding of general tensegrity systems with rigid bodies
Deterministic Single Cell Encapsulation in Asymmetric Microenvironments to Direct Cell Polarity
Computational study of inertial migration of prolate particles in a straight rectangular channel
Elasto-Inertial Focusing Mechanisms of Particles in Shear-Thinning Viscoelastic Fluid in Rectangular Microchannels
Coarse-Grained Modeling of Coronavirus Spike Proteins and ACE2 Receptors
Controlled Deposition of 3D Matrices to Direct Single Cell Functions
Nanoparticles Incorporating a Fluorescence Turn-on Reporter for Real-Time Drug Release Monitoring, a Chemoenhancer and a Stealth Agent: Poseidon’s Trident against Cancer?
Membrane skeleton modulates erythroid proteome remodeling and organelle clearance
Mapping inertial migration in the cross section of a microfluidic channel with high-speed imaging
Biomechanics of red blood cells in human spleen and consequences for physiology and disease
Acoustic separation of circulating tumor cells
Modeling Transmigration of Malaria Infected Red Blood Cells through Inter-Endothelial Slits in Human Spleens using Dissipative Particle Dynamics
Cell separation using tilted-angle standing surface acoustic waves
Probing red blood cell mechanics, rheology and dynamics with a two-component multi-scale model
Erythrocyte responses in low-shear-rate flows: effects of non-biconcave stress-free state in the cytoskeleton
Lipid bilayer and cytoskeletal interactions in a red blood cell
Deformation of the erythrocyte cytoskeleton in tank treading motions
Optical measurement of biomechanical properties of individual erythrocytes from a sickle cell patient
Host cell deformability is linked to transmission in the human malaria parasite <i>Plasmodium falciparum</i>
CAREER: Predictive Multiscale Modeling of Cell Migration through Pores between Endothelial Cells
Collaborative Research NSF-ANR: Mechanisms of Terminal Erythroid Enucleation
Collaborative Research: Mathematical, Numerical, and Experimental Investigation of Flow Sensing by the Primary Cilium
Collaborative Research: Multi-Scale Models and Quantitative Experiments of Red Blood Cells Transmigration through Inter-Endothelial Slits in the Spleen
Collaborative Research: Multi-Scale Models and Quantitative Experiments of Red Blood Cells Transmigration through Inter-Endothelial Slits in the Spleen