With the increasing use of artificial organs, blood damage has been raising ever more clinical concern. Blood trauma is in fact a major complication resulting from the implantation of medical devices and the use of life support apparatuses. Red blood cells damage predictive models furnish critical information on both the design and the evaluation of artificial organs, because their correct usage and implementation are thought to provide clear and rational guidance for the improvement of safety and efficacy. The currently adopted power-law shear-induced haemolysis prediction model lacks sensitivity with respect to the cumulative effect of previously applied stress magnitudes. An alternative model is proposed where a mechanical quantity was d...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Mechanical trauma to the blood can be considered as physical insult presented to the contents of blo...
Modeling and computational analysis play an increasingly-important role in bioengineering, particula...
With the increasing use of artificial organs, blood damage has been raising ever more clinical conce...
Blood trauma caused by medical devices is a major concern. Complications following the implantation/...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
In artificial organs such as vascular prostheses and detoxification devices, blood is exposed to me...
Computational prediction of blood damage has become a crucial tool for evaluating blood-wetted medic...
The goal of this project is to develop a CFD model of blood to predict hemolysis due to mechanical ...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
A new model for mechanically induced red blood cell damage is presented. Incorporating biophysical i...
A quantitative, computationally efficient, first-principles model of acute human cardiovascular resp...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Mechanical trauma to the blood can be considered as physical insult presented to the contents of blo...
Modeling and computational analysis play an increasingly-important role in bioengineering, particula...
With the increasing use of artificial organs, blood damage has been raising ever more clinical conce...
Blood trauma caused by medical devices is a major concern. Complications following the implantation/...
Nowadays, the use of computational fluid dynamics (CFD) in the design phase of new blood contacting ...
In artificial organs such as vascular prostheses and detoxification devices, blood is exposed to me...
Computational prediction of blood damage has become a crucial tool for evaluating blood-wetted medic...
The goal of this project is to develop a CFD model of blood to predict hemolysis due to mechanical ...
Partial or complete failure of red blood cell membrane, also known as hemolysis, is a persistent iss...
Accurate quantitative evaluation of shear stress-related hemolysis (destruction of red blood cells) ...
Blood contacting artificial organs, whether used as a bridge to transplantation, or even as a perman...
A new model for mechanically induced red blood cell damage is presented. Incorporating biophysical i...
A quantitative, computationally efficient, first-principles model of acute human cardiovascular resp...
Artificial heart valves may expose blood to flow conditions that lead to unnaturally high stress and...
Hemolytic profile of an artificial device chronically implanted in the cardiovascular system may rep...
Mechanical trauma to the blood can be considered as physical insult presented to the contents of blo...
Modeling and computational analysis play an increasingly-important role in bioengineering, particula...