2022 Summer.Includes bibliographical references.Blood-contacting medical devices suffer from biofouling caused by proteins, platelets and other cells adhering to the surface which often leads to severe complications and eventual device failure. In particular, extracorporeal membrane oxygenation (ECMO) is a life support treatment that is highly prone to coagulation issues due to a large blood-contacting surface area and turbulent blood flow. The ECMO circuits are constructed from catheters, tubing, and an oxygenator which all come into contact with blood and have several connections that alter the blood flow. The standard therapy to decrease thrombotic complications is to administer a systemic anticoagulant, usually unfractionated heparin. W...
International audienceAn overview on the design of nitric oxide (NO) delivering surfaces for biomedi...
Extracorporeal membrane oxygenation (ECMO) is used in critical care to manage patients with severe r...
Blood-contacting devices interact with blood during their function much like the endothelium that mo...
2022 Summer.Includes bibliographical references.Blood-contacting medical devices such as implantable...
Extracorporeal life support (ECLS) is a class of technologies used to support or replace the functio...
Polymeric materials that continuously release nitric oxide (NO) can inhibit platelet activation and ...
A coating that can generate nitric oxide (NO) for surface modification of cardiovascular stents with...
To devise more biocompatible materials for use in blood contacting devices, novel polymers with eith...
Nitric oxide (NO) generating (NOGen) materials have been shown previously to create localized increa...
Nitric oxide (NO) generating surfaces are potentially promising for improving haemocompatibility of ...
Polymeric materials used to coat or construct biomedical devices universally inspire a foreign body ...
A controllable and inexpensive electrochemical nitric oxide (NO) release system is demonstrated to i...
Nitric Oxide releasing biopolymers have the potential to prolong vascular graft and stent potency wi...
Contains fulltext : 191306.pdf (publisher's version ) (Open Access)Nitric oxide (N...
Bacterial colonization on biomedical devices often leads to biofilms that are recalcitrant to antibi...
International audienceAn overview on the design of nitric oxide (NO) delivering surfaces for biomedi...
Extracorporeal membrane oxygenation (ECMO) is used in critical care to manage patients with severe r...
Blood-contacting devices interact with blood during their function much like the endothelium that mo...
2022 Summer.Includes bibliographical references.Blood-contacting medical devices such as implantable...
Extracorporeal life support (ECLS) is a class of technologies used to support or replace the functio...
Polymeric materials that continuously release nitric oxide (NO) can inhibit platelet activation and ...
A coating that can generate nitric oxide (NO) for surface modification of cardiovascular stents with...
To devise more biocompatible materials for use in blood contacting devices, novel polymers with eith...
Nitric oxide (NO) generating (NOGen) materials have been shown previously to create localized increa...
Nitric oxide (NO) generating surfaces are potentially promising for improving haemocompatibility of ...
Polymeric materials used to coat or construct biomedical devices universally inspire a foreign body ...
A controllable and inexpensive electrochemical nitric oxide (NO) release system is demonstrated to i...
Nitric Oxide releasing biopolymers have the potential to prolong vascular graft and stent potency wi...
Contains fulltext : 191306.pdf (publisher's version ) (Open Access)Nitric oxide (N...
Bacterial colonization on biomedical devices often leads to biofilms that are recalcitrant to antibi...
International audienceAn overview on the design of nitric oxide (NO) delivering surfaces for biomedi...
Extracorporeal membrane oxygenation (ECMO) is used in critical care to manage patients with severe r...
Blood-contacting devices interact with blood during their function much like the endothelium that mo...