Cargando…

Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study

INTRODUCTION: Wall shear stress (WSS) plays a key role in the onset and progression of atherosclerosis in human coronary arteries. Especially sites with low and oscillating WSS near bifurcations have a higher propensity to develop atherosclerosis. WSS computations in coronary bifurcations can be per...

Descripción completa

Detalles Bibliográficos
Autores principales: Schrauwen, Jelle T. C., Karanasos, Antonios, van Ditzhuijzen, Nienke S., Aben, Jean-Paul, van der Steen, Antonius F. W., Wentzel, Jolanda J., Gijsen, Frank J. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686962/
https://www.ncbi.nlm.nih.gov/pubmed/26690897
http://dx.doi.org/10.1371/journal.pone.0145114
_version_ 1782406535524122624
author Schrauwen, Jelle T. C.
Karanasos, Antonios
van Ditzhuijzen, Nienke S.
Aben, Jean-Paul
van der Steen, Antonius F. W.
Wentzel, Jolanda J.
Gijsen, Frank J. H.
author_facet Schrauwen, Jelle T. C.
Karanasos, Antonios
van Ditzhuijzen, Nienke S.
Aben, Jean-Paul
van der Steen, Antonius F. W.
Wentzel, Jolanda J.
Gijsen, Frank J. H.
author_sort Schrauwen, Jelle T. C.
collection PubMed
description INTRODUCTION: Wall shear stress (WSS) plays a key role in the onset and progression of atherosclerosis in human coronary arteries. Especially sites with low and oscillating WSS near bifurcations have a higher propensity to develop atherosclerosis. WSS computations in coronary bifurcations can be performed in angiography-based 3D reconstructions. It is essential to evaluate how reconstruction errors influence WSS computations in mildly-diseased coronary bifurcations. In mildly-diseased lesions WSS could potentially provide more insight in plaque progression. MATERIALS METHODS: Four Plexiglas phantom models of coronary bifurcations were imaged with bi-plane angiography. The lumens were segmented by two clinically experienced readers. Based on the segmentations 3D models were generated. This resulted in three models per phantom: one gold-standard from the phantom model itself, and one from each reader. Steady-state and transient simulations were performed with computational fluid dynamics to compute the WSS. A similarity index and a noninferiority test were used to compare the WSS in the phantoms and their reconstructions. The margin for this test was based on the resolution constraints of angiography. RESULTS: The reconstruction errors were similar to previously reported data; in seven out of eight reconstructions less than 0.10 mm. WSS in the regions proximal and far distal of the stenosis showed a good agreement. However, the low WSS areas directly distal of the stenosis showed some disagreement between the phantoms and the readers. This was due to small deviations in the reconstruction of the stenosis that caused differences in the resulting jet, and consequently the size and location of the low WSS area. DISCUSSION: This study showed that WSS can accurately be computed within angiography-based 3D reconstructions of coronary arteries with early stage atherosclerosis. Qualitatively, there was a good agreement between the phantoms and the readers. Quantitatively, the low WSS regions directly distal to the stenosis were sensitive to small reconstruction errors.
format Online
Article
Text
id pubmed-4686962
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-46869622016-01-07 Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study Schrauwen, Jelle T. C. Karanasos, Antonios van Ditzhuijzen, Nienke S. Aben, Jean-Paul van der Steen, Antonius F. W. Wentzel, Jolanda J. Gijsen, Frank J. H. PLoS One Research Article INTRODUCTION: Wall shear stress (WSS) plays a key role in the onset and progression of atherosclerosis in human coronary arteries. Especially sites with low and oscillating WSS near bifurcations have a higher propensity to develop atherosclerosis. WSS computations in coronary bifurcations can be performed in angiography-based 3D reconstructions. It is essential to evaluate how reconstruction errors influence WSS computations in mildly-diseased coronary bifurcations. In mildly-diseased lesions WSS could potentially provide more insight in plaque progression. MATERIALS METHODS: Four Plexiglas phantom models of coronary bifurcations were imaged with bi-plane angiography. The lumens were segmented by two clinically experienced readers. Based on the segmentations 3D models were generated. This resulted in three models per phantom: one gold-standard from the phantom model itself, and one from each reader. Steady-state and transient simulations were performed with computational fluid dynamics to compute the WSS. A similarity index and a noninferiority test were used to compare the WSS in the phantoms and their reconstructions. The margin for this test was based on the resolution constraints of angiography. RESULTS: The reconstruction errors were similar to previously reported data; in seven out of eight reconstructions less than 0.10 mm. WSS in the regions proximal and far distal of the stenosis showed a good agreement. However, the low WSS areas directly distal of the stenosis showed some disagreement between the phantoms and the readers. This was due to small deviations in the reconstruction of the stenosis that caused differences in the resulting jet, and consequently the size and location of the low WSS area. DISCUSSION: This study showed that WSS can accurately be computed within angiography-based 3D reconstructions of coronary arteries with early stage atherosclerosis. Qualitatively, there was a good agreement between the phantoms and the readers. Quantitatively, the low WSS regions directly distal to the stenosis were sensitive to small reconstruction errors. Public Library of Science 2015-12-21 /pmc/articles/PMC4686962/ /pubmed/26690897 http://dx.doi.org/10.1371/journal.pone.0145114 Text en © 2015 Schrauwen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Schrauwen, Jelle T. C.
Karanasos, Antonios
van Ditzhuijzen, Nienke S.
Aben, Jean-Paul
van der Steen, Antonius F. W.
Wentzel, Jolanda J.
Gijsen, Frank J. H.
Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title_full Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title_fullStr Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title_full_unstemmed Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title_short Influence of the Accuracy of Angiography-Based Reconstructions on Velocity and Wall Shear Stress Computations in Coronary Bifurcations: A Phantom Study
title_sort influence of the accuracy of angiography-based reconstructions on velocity and wall shear stress computations in coronary bifurcations: a phantom study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686962/
https://www.ncbi.nlm.nih.gov/pubmed/26690897
http://dx.doi.org/10.1371/journal.pone.0145114
work_keys_str_mv AT schrauwenjelletc influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT karanasosantonios influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT vanditzhuijzennienkes influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT abenjeanpaul influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT vandersteenantoniusfw influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT wentzeljolandaj influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy
AT gijsenfrankjh influenceoftheaccuracyofangiographybasedreconstructionsonvelocityandwallshearstresscomputationsincoronarybifurcationsaphantomstudy