Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents

Computational fluid dynamics (CFD) has enormous potential for the development of novel cardiovascular implants. In particular, the evaluation of the thrombogenic potential of implants is gaining importance. For this purpose, the numerical model must represent the essential properties of the real sys...

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Main Authors: Stiehm Michael, Borowski Finja, Oldenburg Jan, Öner Alper, Schmitz Klaus-Peter
Format: Article
Language:English
Published: De Gruyter 2022-09-01
Series:Current Directions in Biomedical Engineering
Subjects:
Online Access:https://doi.org/10.1515/cdbme-2022-1133
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author Stiehm Michael
Borowski Finja
Oldenburg Jan
Öner Alper
Schmitz Klaus-Peter
author_facet Stiehm Michael
Borowski Finja
Oldenburg Jan
Öner Alper
Schmitz Klaus-Peter
author_sort Stiehm Michael
collection DOAJ
description Computational fluid dynamics (CFD) has enormous potential for the development of novel cardiovascular implants. In particular, the evaluation of the thrombogenic potential of implants is gaining importance. For this purpose, the numerical model must represent the essential properties of the real system, i.e., an implant in the human blood circulation, in a suitable form. Due to its complexity, the model building process is crucial for the successful application of the model. Currently, there is no structured guideline for the application of numerical flow simulation to which model developers can refer. Based on NASA and ASTM, we present key aspects of the model building process using CFD for stent flow as an example.
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spelling doaj.art-4460d5a8d3554dbba77c5ad2772f35f12023-03-06T10:24:52ZengDe GruyterCurrent Directions in Biomedical Engineering2364-55042022-09-018252052310.1515/cdbme-2022-1133Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of StentsStiehm Michael0Borowski Finja1Oldenburg Jan2Öner Alper3Schmitz Klaus-Peter4Institute for ImplantTechnology and Biomaterials e.V., Friedrich-Barnewitz-Str. 4, 18119Rostock-Warnemunde, GermanyInstitute for ImplantTechnology and Biomaterials e.V.,Rostock-Warnemunde, GermanyInstitute for ImplantTechnology and Biomaterials e.V.,Rostock-Warnemunde, GermanyDepartment of Cardiology Rostock University Medical Center,Rostock, GermanyInstitute for ImplantTechnology and Biomaterials e.V.,Rostock-Warnemunde, GermanyComputational fluid dynamics (CFD) has enormous potential for the development of novel cardiovascular implants. In particular, the evaluation of the thrombogenic potential of implants is gaining importance. For this purpose, the numerical model must represent the essential properties of the real system, i.e., an implant in the human blood circulation, in a suitable form. Due to its complexity, the model building process is crucial for the successful application of the model. Currently, there is no structured guideline for the application of numerical flow simulation to which model developers can refer. Based on NASA and ASTM, we present key aspects of the model building process using CFD for stent flow as an example.https://doi.org/10.1515/cdbme-2022-1133validationverificationcomputational fluid dynamicsblood flow
spellingShingle Stiehm Michael
Borowski Finja
Oldenburg Jan
Öner Alper
Schmitz Klaus-Peter
Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
Current Directions in Biomedical Engineering
validation
verification
computational fluid dynamics
blood flow
title Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
title_full Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
title_fullStr Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
title_full_unstemmed Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
title_short Recommendations for the Development of CFD Model to Assess the Thrombogenic Potential of Stents
title_sort recommendations for the development of cfd model to assess the thrombogenic potential of stents
topic validation
verification
computational fluid dynamics
blood flow
url https://doi.org/10.1515/cdbme-2022-1133
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AT oldenburgjan recommendationsforthedevelopmentofcfdmodeltoassessthethrombogenicpotentialofstents
AT oneralper recommendationsforthedevelopmentofcfdmodeltoassessthethrombogenicpotentialofstents
AT schmitzklauspeter recommendationsforthedevelopmentofcfdmodeltoassessthethrombogenicpotentialofstents