International audienceWe have developed and tested a novel microfluidic device for blood oxygenation, which exhibits a large surface area of gas exchange and can support long-term sustainable endothelialization of blood microcapillaries, enhancing its hemocompatibility for clinical applications. The architecture of the parallel stacking of the trilayers is based on a central injection for blood and a lateral injection/output for gas which allows significant reduction in shear stress, promoting sustainable endothelialization since cells can be maintained viable for up to 2 weeks after initial seeding in the blood microchannel network. The circular design of curved blood capillaries allows covering a maximal surface area at 4 inch wafer scale...
This study focusses on the development of a biomimetic oxygenator test device. Due to limited biocom...
Extracorporeal membrane oxygenation (ECMO) is a life support technology capable of providing full re...
Extracorporeal membrane oxygenation (ECMO) is a life support system that circulates the blood throug...
International audienceWe have developed and tested a novel microfluidic device for blood oxygenation...
The recent emergence of microfluidic extracorporeal lung support technologies presents an opportunit...
End-stage lung diseases may result in death either by oxygenation and carbon dioxide exchange insuff...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
In this work, alveolar-like microfluidic devices are studied with a horizontal membrane arrangement ...
Lung disease is one of the most important causes of high morbidity in preterm infants. In this work,...
Chronic lower respiratory disease afflicts over 5% of the United States population, leading to over ...
In this work, alveolar-like microfluidic devices are studied with a horizontal membrane arrangement ...
In cases of severe lung or heart failure, extracorporeal membrane oxygenation (ECMO) is a life-savin...
Chronic lower respiratory disease is highly prevalent in the United States, and there remains a need...
Nanostructured membranes with precisely engineered nanopores were fabricated on a thin silicon nitri...
This study focusses on the development of a biomimetic oxygenator test device. Due to limited biocom...
Extracorporeal membrane oxygenation (ECMO) is a life support technology capable of providing full re...
Extracorporeal membrane oxygenation (ECMO) is a life support system that circulates the blood throug...
International audienceWe have developed and tested a novel microfluidic device for blood oxygenation...
The recent emergence of microfluidic extracorporeal lung support technologies presents an opportunit...
End-stage lung diseases may result in death either by oxygenation and carbon dioxide exchange insuff...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
In this work, alveolar-like microfluidic devices are studied with a horizontal membrane arrangement ...
Lung disease is one of the most important causes of high morbidity in preterm infants. In this work,...
Chronic lower respiratory disease afflicts over 5% of the United States population, leading to over ...
In this work, alveolar-like microfluidic devices are studied with a horizontal membrane arrangement ...
In cases of severe lung or heart failure, extracorporeal membrane oxygenation (ECMO) is a life-savin...
Chronic lower respiratory disease is highly prevalent in the United States, and there remains a need...
Nanostructured membranes with precisely engineered nanopores were fabricated on a thin silicon nitri...
This study focusses on the development of a biomimetic oxygenator test device. Due to limited biocom...
Extracorporeal membrane oxygenation (ECMO) is a life support technology capable of providing full re...
Extracorporeal membrane oxygenation (ECMO) is a life support system that circulates the blood throug...