The following pages link to (Q3621229):
Displaying 13 items.
- A stability result on the orientation of red blood cells in the venule network (Q361112) (← links)
- Numerical simulation of the motion of red blood cells and vesicles in microfluidic flows (Q424946) (← links)
- An adaptive Newton continuation strategy for the fully implicit finite element immersed boundary method (Q440605) (← links)
- Simulation of plant cell shrinkage during drying -- a SPH-DEM approach (Q463506) (← links)
- An IB-LBM study of continuous cell sorting in deterministic lateral displacement arrays (Q529402) (← links)
- Using 3D fluid-structure interaction model to analyse the biomechanical properties of erythrocyte (Q552870) (← links)
- A coupled SPH-DEM model for micro-scale structural deformations of plant cells during drying (Q1629850) (← links)
- The immersed boundary-lattice Boltzmann method parallel model for fluid-structure interaction on heterogeneous platforms (Q2007089) (← links)
- Features of rheologycal behaviour and flow of blood in capillaries and microcirculation units (Q2703287) (← links)
- The Finite Element Immersed Boundary Method for the Numerical Simulation of the Motion of Red Blood Cells in Microfluidic Flows (Q2838328) (← links)
- A LATTICE BOLTZMANN STUDY ON THE LARGE DEFORMATION OF RED BLOOD CELLS IN SHEAR FLOW (Q3499088) (← links)
- (Q4396306) (← links)
- Dynamics of red blood cells in oscillating shear flow (Q4976741) (← links)