Radiopaque Fully Degradable Nanocomposites for Coronary Stents

10.1038/s41598-018-35663-2

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Main Authors: Ang, H.Y, Toong, D, Chow, W.S, Seisilya, W, Wu, W, Wong, P, Venkatraman, S.S, Foin, N, Huang, Y
Other Authors: DUKE-NUS MEDICAL SCHOOL
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/178378
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spelling sg-nus-scholar.10635-1783782024-11-08T19:35:38Z Radiopaque Fully Degradable Nanocomposites for Coronary Stents Ang, H.Y Toong, D Chow, W.S Seisilya, W Wu, W Wong, P Venkatraman, S.S Foin, N Huang, Y DUKE-NUS MEDICAL SCHOOL barium sulfate biomaterial contrast medium nanocomposite polyester polylactide chemistry drug eluting stent finite element analysis tensile strength Barium Sulfate Biocompatible Materials Contrast Media Drug-Eluting Stents Finite Element Analysis Nanocomposites Polyesters Tensile Strength 10.1038/s41598-018-35663-2 Scientific Reports 8 1 17409 2020-10-20T09:36:54Z 2020-10-20T09:36:54Z 2018 Article Ang, H.Y, Toong, D, Chow, W.S, Seisilya, W, Wu, W, Wong, P, Venkatraman, S.S, Foin, N, Huang, Y (2018). Radiopaque Fully Degradable Nanocomposites for Coronary Stents. Scientific Reports 8 (1) : 17409. ScholarBank@NUS Repository. https://doi.org/10.1038/s41598-018-35663-2 2045-2322 https://scholarbank.nus.edu.sg/handle/10635/178378 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic barium sulfate
biomaterial
contrast medium
nanocomposite
polyester
polylactide
chemistry
drug eluting stent
finite element analysis
tensile strength
Barium Sulfate
Biocompatible Materials
Contrast Media
Drug-Eluting Stents
Finite Element Analysis
Nanocomposites
Polyesters
Tensile Strength
spellingShingle barium sulfate
biomaterial
contrast medium
nanocomposite
polyester
polylactide
chemistry
drug eluting stent
finite element analysis
tensile strength
Barium Sulfate
Biocompatible Materials
Contrast Media
Drug-Eluting Stents
Finite Element Analysis
Nanocomposites
Polyesters
Tensile Strength
Ang, H.Y
Toong, D
Chow, W.S
Seisilya, W
Wu, W
Wong, P
Venkatraman, S.S
Foin, N
Huang, Y
Radiopaque Fully Degradable Nanocomposites for Coronary Stents
description 10.1038/s41598-018-35663-2
author2 DUKE-NUS MEDICAL SCHOOL
author_facet DUKE-NUS MEDICAL SCHOOL
Ang, H.Y
Toong, D
Chow, W.S
Seisilya, W
Wu, W
Wong, P
Venkatraman, S.S
Foin, N
Huang, Y
format Article
author Ang, H.Y
Toong, D
Chow, W.S
Seisilya, W
Wu, W
Wong, P
Venkatraman, S.S
Foin, N
Huang, Y
author_sort Ang, H.Y
title Radiopaque Fully Degradable Nanocomposites for Coronary Stents
title_short Radiopaque Fully Degradable Nanocomposites for Coronary Stents
title_full Radiopaque Fully Degradable Nanocomposites for Coronary Stents
title_fullStr Radiopaque Fully Degradable Nanocomposites for Coronary Stents
title_full_unstemmed Radiopaque Fully Degradable Nanocomposites for Coronary Stents
title_sort radiopaque fully degradable nanocomposites for coronary stents
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/178378
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