State of the art artificial membrane lungs incorporate hollow fiber membranes. The creeping blood flow in hollow fiber bundles forms a boundary layer that represents a diffusive resistance to gas transfer. Advances in additive manufacturing allow for the fabrication of novel membrane designs that overcome this limitation. The goal of this study is fabrication and subsequent experimental evaluation of blood gas transfer of novel membrane designs based on triply periodic minimal surface (TPMS) geometries in comparison to the predominantly present hollow fiber geometry. A fabrication process was established based on a casting process with a dissolvable 3D-printed mold. Modules were manufactured containing different membrane designs: three TPMS...
Artificial lungs are in use, but difficult issues remain in the field of membrane development relate...
A prototype of an implantable artificial lung without a pump (Prototype II) has been tested. A comme...
Blood gas exchange across synthetic membranes is primarily used in blood oxygenators for short-term ...
Background: Membranes based on triply periodic minimal surfaces (TPMS) have proven a superior gas tr...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
Respiratory assist devices seek optimized performance in terms of gas transfer efficiency and thromb...
Currently, artificial-membrane lungs consist of thousands of hollow fiber membranes where blood flow...
Can hollow fiber membranes be produced in other geometries than circular? If so, are membrane proper...
Hemodialysis using hollow-fiber membranes provides life-sustaining treatment for nearly 2 million pa...
Chronic lower respiratory disease afflicts over 5% of the United States population, leading to over ...
Designing hollow fiber (HF) membrane modules occupies one of the key positions in the development of...
Mass transfer is central in designing hollow fiber oxygenators. A model system of oxygen transfer to...
Extra-corporeal membrane oxygenation (ECMO) systems can perform the roles of the human heart and lun...
Polyethersulfone (PES) hollow fiber membranes were fabricated via the dry-wet phase inversion spinni...
ObjectiveA lung assist device would serve an important clinical need as a bridge to transplant or de...
Artificial lungs are in use, but difficult issues remain in the field of membrane development relate...
A prototype of an implantable artificial lung without a pump (Prototype II) has been tested. A comme...
Blood gas exchange across synthetic membranes is primarily used in blood oxygenators for short-term ...
Background: Membranes based on triply periodic minimal surfaces (TPMS) have proven a superior gas tr...
Current artificial lungs, or membrane oxygenators, have limited gas exchange capacity due to their i...
Respiratory assist devices seek optimized performance in terms of gas transfer efficiency and thromb...
Currently, artificial-membrane lungs consist of thousands of hollow fiber membranes where blood flow...
Can hollow fiber membranes be produced in other geometries than circular? If so, are membrane proper...
Hemodialysis using hollow-fiber membranes provides life-sustaining treatment for nearly 2 million pa...
Chronic lower respiratory disease afflicts over 5% of the United States population, leading to over ...
Designing hollow fiber (HF) membrane modules occupies one of the key positions in the development of...
Mass transfer is central in designing hollow fiber oxygenators. A model system of oxygen transfer to...
Extra-corporeal membrane oxygenation (ECMO) systems can perform the roles of the human heart and lun...
Polyethersulfone (PES) hollow fiber membranes were fabricated via the dry-wet phase inversion spinni...
ObjectiveA lung assist device would serve an important clinical need as a bridge to transplant or de...
Artificial lungs are in use, but difficult issues remain in the field of membrane development relate...
A prototype of an implantable artificial lung without a pump (Prototype II) has been tested. A comme...
Blood gas exchange across synthetic membranes is primarily used in blood oxygenators for short-term ...