Reduction of late in-stent stenosis in a porcine coronary artery model by cobalt chromium stents with a nanocoat of polyphosphazene (Polyzene-F).
Stampfl, Ulrike
Reduction of late in-stent stenosis in a porcine coronary artery model by cobalt chromium stents with a nanocoat of polyphosphazene (Polyzene-F). [electronic resource] - Cardiovascular and interventional radiology - 1184-92 p. digital
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
1432-086X
10.1007/s00270-008-9392-7 doi
Animals
C-Reactive Protein--metabolism
Chromium
Coated Materials, Biocompatible
Cobalt
Coronary Angiography
Coronary Restenosis--prevention & control
Female
Lymphotoxin-alpha--metabolism
Organophosphorus Compounds
Polymers
Statistics, Nonparametric
Stents
Swine
Swine, Miniature
Tumor Necrosis Factor-alpha--metabolism
Reduction of late in-stent stenosis in a porcine coronary artery model by cobalt chromium stents with a nanocoat of polyphosphazene (Polyzene-F). [electronic resource] - Cardiovascular and interventional radiology - 1184-92 p. digital
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
1432-086X
10.1007/s00270-008-9392-7 doi
Animals
C-Reactive Protein--metabolism
Chromium
Coated Materials, Biocompatible
Cobalt
Coronary Angiography
Coronary Restenosis--prevention & control
Female
Lymphotoxin-alpha--metabolism
Organophosphorus Compounds
Polymers
Statistics, Nonparametric
Stents
Swine
Swine, Miniature
Tumor Necrosis Factor-alpha--metabolism