Multiple red blood cell flows through microvascular bifurcations: cell free layer, cell trajectory, and hematocrit separation

X Yin, T Thomas, J Zhang - Microvascular research, 2013 - Elsevier
Multiple red blood cell (RBC) flows through a symmetric microvascular bifurcation model
have been simulated with the two-dimensional immersed-boundary lattice-Boltzmann …

Multiple red blood cell flows through microvascular bifurcations: cell free layer, cell trajectory, and hematocrit separation

X Yin, T Thomas, J Zhang - Microvascular research, 2013 - pubmed.ncbi.nlm.nih.gov
Multiple red blood cell (RBC) flows through a symmetric microvascular bifurcation model
have been simulated with the two-dimensional immersed-boundary lattice-Boltzmann …

Multiple red blood cell flows through microvascular bifurcations: Cell free layer, cell trajectory, and hematocrit separation

X Yin, T Thomas, J Zhang - Microvascular Research, 2013 - infona.pl
Multiple red blood cell (RBC) flows through a symmetric microvascular bifurcation model
have been simulated with the two-dimensional immersed-boundary lattice-Boltzmann …

Multiple red blood cell flows through microvascular bifurcations: cell free layer, cell trajectory, and hematocrit separation.

X Yin, T Thomas, J Zhang - Microvascular Research, 2013 - europepmc.org
Multiple red blood cell (RBC) flows through a symmetric microvascular bifurcation model
have been simulated with the two-dimensional immersed-boundary lattice-Boltzmann …

Multiple red blood cell flows through microvascular bifurcations: Cell free layer, cell trajectory, and hematocrit separation

X Yin, T Thomas, J Zhang - Microvascular Research, 2013 - infona.pl
Multiple red blood cell (RBC) flows through a symmetric microvascular bifurcation model
have been simulated with the two-dimensional immersed-boundary lattice-Boltzmann …