Sickle cell disease (SCD) is a highly complex genetic blood disorder in which red blood cells (RBC) exhibit heterogeneous morphology changes and decreased deformability. We employ a kinetic model for cell morphological sickling that invokes parameters derived from patient-specific data. This model is used to investigate the dynamics of individual sickle cells in a capillary-like microenvironment in order to address various mechanisms associated with SCD. We show that all RBCs, both hypoxia-unaffected and hypoxia-affected ones, regularly pass through microgates under oxygenated state. However, the hypoxia-affected cells undergo sickling which significantly alters cell dynamics. In particular, the dense and rigid sickle RBCs are obstructed th...
We present a microfluidic approach that allows simultaneous interrogation of RBC properties in physi...
<p>(a) Transit velocity of sickle cells with different shapes in the Oxy state obtained from experim...
The polymerization of the mutant hemoglobin S upon deoxygenation to form fibers in red blood cells o...
<div><p>Sickle cell disease (SCD) is a highly complex genetic blood disorder in which red blood cell...
<p>(a) Simulations of time sequence of RBCs flowing through capillary-inspired microchannel under tr...
Abstract Kinetics of cell sickling and morphological change have been recognized as i...
<p>(a) Morphological transition of RBCs from the biconcave to different sickle shapes under transien...
University of Minnesota Ph.D. dissertation. February 2018. Major: Biomedical Engineering. Advisor: D...
International audienceSeveral regimes of motion are evident in red blood cells (RBCs) under shear fl...
Polymerization and adhesion, dynamic processes that are hallmarks of sickle cell disease (SCD), have...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
We developed a microfluidics-based model to quantify cell-level processes modulating the pathophysio...
Sickle cell disease is a genetic disorder that alters red blood cells such that their hemoglobin can...
Oxygen tension levels and red cell velocities for the flow of sickle-cell blood in the capillaries a...
Sickle cell disorder (SCD) is a multisystem disease with heterogeneous phenotypes. Although all pati...
We present a microfluidic approach that allows simultaneous interrogation of RBC properties in physi...
<p>(a) Transit velocity of sickle cells with different shapes in the Oxy state obtained from experim...
The polymerization of the mutant hemoglobin S upon deoxygenation to form fibers in red blood cells o...
<div><p>Sickle cell disease (SCD) is a highly complex genetic blood disorder in which red blood cell...
<p>(a) Simulations of time sequence of RBCs flowing through capillary-inspired microchannel under tr...
Abstract Kinetics of cell sickling and morphological change have been recognized as i...
<p>(a) Morphological transition of RBCs from the biconcave to different sickle shapes under transien...
University of Minnesota Ph.D. dissertation. February 2018. Major: Biomedical Engineering. Advisor: D...
International audienceSeveral regimes of motion are evident in red blood cells (RBCs) under shear fl...
Polymerization and adhesion, dynamic processes that are hallmarks of sickle cell disease (SCD), have...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
We developed a microfluidics-based model to quantify cell-level processes modulating the pathophysio...
Sickle cell disease is a genetic disorder that alters red blood cells such that their hemoglobin can...
Oxygen tension levels and red cell velocities for the flow of sickle-cell blood in the capillaries a...
Sickle cell disorder (SCD) is a multisystem disease with heterogeneous phenotypes. Although all pati...
We present a microfluidic approach that allows simultaneous interrogation of RBC properties in physi...
<p>(a) Transit velocity of sickle cells with different shapes in the Oxy state obtained from experim...
The polymerization of the mutant hemoglobin S upon deoxygenation to form fibers in red blood cells o...