Most of the existing hemolysis mechanism studies are carried out on the macro flow scale. They assume that the erythrocyte membranes with different loads will suffer the same damage, which obviously has limitations. Thus, exploring the hemolysis mechanism through the macroscopic flow field information is a tough challenge. In order to further understand the non-physiological shear hemolysis phenomenon at the cell scale, this study used the coarse-grained erythrocytes damage model at the mesoscopic scale based on the transport dissipative particle dynamics (tDPD) method. Combined with computational fluid dynamics the hemolysis of scalarized shear stress (τ) in the clearance of “Impella 5.0” was evaluated under the Lagrange perspective and Eu...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
An experimental system was designed and completed to realize the visualization of erythrocyte suspen...
The present work focuses on the main parameters that influence shear-promoted encapsulation of drugs...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Ventricular assistance devices (VADs) for heart failure treatment have been paid high attention amon...
Incidence of cardiovascular diseases (CVDs) is growing more prevalent in today’s society as a result...
A new model for mechanically induced red blood cell damage is presented. Incorporating biophysical i...
Ventricular Assist Devices are continuous flow pumps that act as cardiac orthoses. The evaluation of...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Modeling and computational analysis play an increasingly-important role in bioengineering, particula...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
An experimental system was designed and completed to realize the visualization of erythrocyte suspen...
The present work focuses on the main parameters that influence shear-promoted encapsulation of drugs...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Ventricular assistance devices (VADs) for heart failure treatment have been paid high attention amon...
Incidence of cardiovascular diseases (CVDs) is growing more prevalent in today’s society as a result...
A new model for mechanically induced red blood cell damage is presented. Incorporating biophysical i...
Ventricular Assist Devices are continuous flow pumps that act as cardiac orthoses. The evaluation of...
[[abstract]]Non-physiologic turbulent flow occurs in medical cardiovascular devices resulting in hem...
Modeling and computational analysis play an increasingly-important role in bioengineering, particula...
Implantable cardiovascular devices are commonly used in clinical treatment for end stage cardiovascu...
AbstractSickle erythrocytes exhibit abnormal morphology and membrane mechanics under deoxygenated co...
An experimental system was designed and completed to realize the visualization of erythrocyte suspen...
The present work focuses on the main parameters that influence shear-promoted encapsulation of drugs...