Background: Nanomedicine has the potential to revolutionize medicine and help clinicians to treat cardiovascular disease through the improvement of stents. Advanced nanomaterials and tools for monitoring cell–material interactions will aid in inhibiting stent thrombosis. Although titanium boron nitride (TiBN), titanium diboride, and carbon nanotube (CNT) thin films are emerging materials in the biomaterial field, the effect of their surface properties on platelet adhesion is relatively unexplored. Objective and methods: In this study, novel nanomaterials made of amorphous carbon, CNTs, titanium diboride, and TiBN were grown by vacuum deposition techniques to assess their role as potential stent coatings. Platelet response towards the nanos...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
[eng] Although coronary stents have improved the early and long-term consequences of arterial lesion...
Nanotechnology in the intensive care: Intravascular biocompatibility of carbon nanomaterials - effec...
Nanotechnology in the intensive care: Intravascular biocompatibility of carbon nanomaterials - effec...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Platelet adhesion and activation resulting from the interaction between the flowing blood and the su...
2022 Summer.Includes bibliographical references.Titanium and its alloys are used to make different b...
Coronary in-stent restenosis and late stent thrombosis are the two major inadequacies of v...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Vascular stenting has emerge...
Harry D Samaroo, Jing Lu, Thomas J WebsterDivision of Engineering, Brown, University, Providence, RI...
Atherosclerosis lesions are described as the formation of an occlusive wall-vessel plaque that can e...
AbstractRecent studies have demonstrated that carbon nanotubes (CNTs) induce platelet aggregation, e...
ABSTRACT The article is dedicated to study of bioinert properties of a coronary stent with nanostruc...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...
[eng] Although coronary stents have improved the early and long-term consequences of arterial lesion...
Nanotechnology in the intensive care: Intravascular biocompatibility of carbon nanomaterials - effec...
Nanotechnology in the intensive care: Intravascular biocompatibility of carbon nanomaterials - effec...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Platelet adhesion and activation resulting from the interaction between the flowing blood and the su...
2022 Summer.Includes bibliographical references.Titanium and its alloys are used to make different b...
Coronary in-stent restenosis and late stent thrombosis are the two major inadequacies of v...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Vascular stenting has emerge...
Harry D Samaroo, Jing Lu, Thomas J WebsterDivision of Engineering, Brown, University, Providence, RI...
Atherosclerosis lesions are described as the formation of an occlusive wall-vessel plaque that can e...
AbstractRecent studies have demonstrated that carbon nanotubes (CNTs) induce platelet aggregation, e...
ABSTRACT The article is dedicated to study of bioinert properties of a coronary stent with nanostruc...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
Inorganic materials are receiving significant interest in medicine given their usefulness for therap...
INTRODUCTION:Recently, we introduced a new deposition method, based on Ion Plating Plasma Assisted t...