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PMID: 30426299 Published · ppublish English Comparative Study Journal Article

Post-implantation shear stress assessment: an emerging tool for differentiation of bioresorbable scaffolds.

The international journal of cardiovascular imaging ·Vol. 35 ·No. 3 ·2019-03-00 ·页码 409-418

Tenekecioglu E, Torii R, Katagiri Y, Chichareon P, Asano T, Miyazaki Y, Takahashi K, Modolo R, Al-Lamee R, Al-Lamee K, Colet C, Reiber JHC, Pekkan K, van Geuns R, Bourantas CV, Onuma Y, Serruys PW

Abstract

Optical coherence tomography based computational flow dynamic (CFD) modeling provides detailed information about the local flow behavior in stented/scaffolded vessel segments. Our aim is to investigate the in-vivo effect of strut thickness and strut protrusion on endothelial wall shear stress (ESS) distribution in ArterioSorb Absorbable Drug-Eluting Scaffold (ArterioSorb) and Absorb everolimus-eluting Bioresorbable Vascular Scaffold (Absorb) devices that struts with similar morphology (quadratic structure) but different thickness. In three animals, six coronary arteries were treated with ArterioSorb. At different six animals, six coronary arteries were treated with Absorb. Following three-dimensional(3D) reconstruction of the coronary arteries, Newtonian steady flow simulation was performed and the ESS were estimated. Mixed effects models were used to compare ESS distribution in the two devices. There were 4591 struts in the analyzed 477 cross-sections in Absorb (strut thickness = 157 µm) and 3105 struts in 429 cross-sections in ArterioSorb (strut thickness = 95 µm) for the protrusion analysis. In cross-section level analysis, there was significant difference between the scaffolds in the protrusion distances. The protrusion was higher in Absorb (97% of the strut thickness) than in ArterioSorb (88% of the strut thickness). ESS was significantly higher in ArterioSorb (1.52 ± 0.34 Pa) than in Absorb (0.73 ± 2.19 Pa) (p = 0.001). Low- and very-low ESS data were seen more often in Absorb than in ArterioSorb. ArterioSorb is associated with a more favorable ESS distribution compared to the Absorb. These differences should be attributed to different strut thickness/strut protrusion that has significant effect on shear stress distribution.

Keywords
Bioresorbable scaffolds Computational fluid dynamics Scaffold design Shear stress
MeSH 主题词
Absorbable Implants Animals Cardiovascular Agents/administration & dosage Coated Materials, Biocompatible Computer Simulation Coronary Angiography Coronary Circulation Coronary Vessels/diagnostic imaging,physiopathology,surgery Everolimus/administration & dosage Image Interpretation, Computer-Assisted Materials Testing Models, Animal Models, Cardiovascular Percutaneous Coronary Intervention/adverse effects,instrumentation Predictive Value of Tests Prosthesis Design Stress, Mechanical Swine Swine, Miniature Tomography, Optical Coherence/methods
化学物质
Cardiovascular Agents Coated Materials, Biocompatible Everolimus
作者与单位
共 17 位作者,点击展开单位 / ORCID
Tenekecioglu Erhan
Department of Interventional Cardiology, Erasmus University Medical Center, Thoraxcenter, Rotterdam, The Netherlands.
Torii Ryo
Department of Mechanical Engineering, University College London, London, UK.
Katagiri Yuki
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Chichareon Ply
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands. | Division of Cardiology, Department of Internal Medicine, Faculty of Medicine, Prince of Songkla University, Songkhla, Thailand.
Asano Taku
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Miyazaki Yosuke
Department of Interventional Cardiology, Erasmus University Medical Center, Thoraxcenter, Rotterdam, The Netherlands.
Takahashi Kuniaki
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Modolo Rodrigo
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Al-Lamee Rasha
International Centre for Circulatory Health, Imperial College London, London, UK.
Al-Lamee Kadem
Arterius, Leeds, UK.
Colet Carlos
Department of Cardiology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands. | Department of Cardiology, Universitair Ziekenhuis Brussel, Brussel, Belgium.
Reiber Johan H C
Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.
Pekkan Kerem
Department of Mechanical Engineering, Koc University, Istanbul, Turkey.
van Geuns Robert
Department of Interventional Cardiology, Erasmus University Medical Center, Thoraxcenter, Rotterdam, The Netherlands.
Bourantas Christos V
Department of Cardiology, University College of London Hospitals, London, UK. | Department of Cardiology, Barts Heart Centre, London, UK.
Onuma Yoshinobu
Department of Interventional Cardiology, Erasmus University Medical Center, Thoraxcenter, Rotterdam, The Netherlands.
Serruys Patrick W
Department of Interventional Cardiology, Erasmus University Medical Center, Thoraxcenter, Rotterdam, The Netherlands. [email protected]. | Imperial College, London, UK. [email protected]. | Dr.h.c. Melbourne School of Engineering, University of Melbourne, Melbourne (AUS), Westblaak 98, 3012KM, Rotterdam, The Netherlands. [email protected].
Article Info
Journal
The international journal of cardiovascular imaging
Abbr.
Int J Cardiovasc Imaging
ISSN
1875-8312
Corresponding email
Published
2019-03-00
电子出版
2018-00-13
页码
409-418
Language
English
Country/Region
United States
NLM ID
100969716
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