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Bioresorbable coronary scaffolds should disappear faster
by
Lafont, Antoine
, Mensah-Gourmel, Johanne
in
Absorbable Implants
/ Angioplasty
/ Animals
/ Coronary vessels
/ Coronary Vessels - surgery
/ Fluid mechanics
/ Humans
/ Inflammation
/ Internal Medicine
/ Mechanics
/ Physics
/ Stents
/ Thromboembolism
/ Thrombosis
/ Time Factors
/ Tissue Scaffolds
2016
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Bioresorbable coronary scaffolds should disappear faster
by
Lafont, Antoine
, Mensah-Gourmel, Johanne
in
Absorbable Implants
/ Angioplasty
/ Animals
/ Coronary vessels
/ Coronary Vessels - surgery
/ Fluid mechanics
/ Humans
/ Inflammation
/ Internal Medicine
/ Mechanics
/ Physics
/ Stents
/ Thromboembolism
/ Thrombosis
/ Time Factors
/ Tissue Scaffolds
2016
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Bioresorbable coronary scaffolds should disappear faster
by
Lafont, Antoine
, Mensah-Gourmel, Johanne
in
Absorbable Implants
/ Angioplasty
/ Animals
/ Coronary vessels
/ Coronary Vessels - surgery
/ Fluid mechanics
/ Humans
/ Inflammation
/ Internal Medicine
/ Mechanics
/ Physics
/ Stents
/ Thromboembolism
/ Thrombosis
/ Time Factors
/ Tissue Scaffolds
2016
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Journal Article
Bioresorbable coronary scaffolds should disappear faster
2016
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Overview
Why do bioresorbable scaffolds represent a revolution in percutaneous coronary intervention? Permanent coronary stents for a temporary situation (ie, scaffolding during healing) can lead to another disease such as in-stent restenosis or thrombosis, or neoatherosclerosis, due to a foreign body in the artery. Permanent metallic caging of the coronary artery increases the risk of in-stent restenosis or thrombosis
Publisher
Elsevier Ltd,Elsevier Limited,Elsevier
Subject
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