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PMID: 34733832 Published · epublish English Journal Article

High Wall Shear Stress can Predict Wall Degradation in Ascending Aortic Aneurysms: An Integrated Biomechanics Study.

Frontiers in bioengineering and biotechnology ·Vol. 9 ·2021-00-00 ·页码 750656

Salmasi MY, Pirola S, Sasidharan S, Fisichella SM, Redaelli A, Jarral OA, O'Regan DP, Oo AY, Moore JE, Xu XY, Athanasiou T

Abstract

Background: Blood flow patterns can alter material properties of ascending thoracic aortic aneurysms (ATAA) via vascular wall remodeling. This study examines the relationship between wall shear stress (WSS) obtained from image-based computational modelling with tissue-derived mechanical and microstructural properties of the ATAA wall using segmental analysis. Methods: Ten patients undergoing surgery for ATAA were recruited. Exclusions: bicuspid aortopathy, connective tissue disease. All patients had pre-operative 4-dimensional flow magnetic resonance imaging (4D-MRI), allowing for patient-specific computational fluid dynamics (CFD) analysis and anatomically precise WSS mapping of ATAA regions (6-12 segments per patient). ATAA samples were obtained from surgery and subjected to region-specific tensile and peel testing (matched to WSS segments). Computational pathology was used to characterize elastin/collagen abundance and smooth muscle cell (SMC) count. Results: Elevated values of WSS were predictive of: reduced wall thickness [coef -0.0489, 95% CI (-0.0905, -0.00727), p = 0.022] and dissection energy function (longitudinal) [-15,0, 95% CI (-33.00, -2.98), p = 0.048]. High WSS values also predicted higher ultimate tensile strength [coef 0.136, 95% CI (0 0.001, 0.270), p = 0.048]. Additionally, elevated WSS also predicted a reduction in elastin levels [coef -0.276, 95% (CI -0.531, -0.020), p = 0.035] and lower SMC count ([oef -6.19, 95% CI (-11.41, -0.98), p = 0.021]. WSS was found to have no effect on collagen abundance or circumferential mechanical properties. Conclusions: Our study suggests an association between elevated WSS values and aortic wall degradation in ATAA disease. Further studies might help identify threshold values to predict acute aortic events.

Keywords
CFD aneurysm aortic surgery computational fluid dynamics computational pathology magnetic resonance imaging vascular biomechanics wall shear stress
作者与单位
共 11 位作者,点击展开单位 / ORCID
Salmasi M Yousuf
Department of Surgery and Cancer, Imperial College London, London, United Kingdom.
Pirola Selene
Department of Chemical Engineering, Imperial College London, London, United Kingdom.
Sasidharan Sumesh
Department of Bioengineering, Imperial College London, London, United Kingdom.
Fisichella Serena M
Department of Chemical Engineering, Imperial College London, London, United Kingdom. | Politecnico di Milano, Milan, Italy.
Redaelli Alberto
Politecnico di Milano, Milan, Italy.
Jarral Omar A
Department of Surgery and Cancer, Imperial College London, London, United Kingdom.
O'Regan Declan P
MRC London Institute of Medical Sciences, Imperial College London, London, United Kingdom.
Oo Aung Ye
Barts Heart Centre, London, United Kingdom.
Moore James E
Department of Bioengineering, Imperial College London, London, United Kingdom.
Xu Xiao Yun
Department of Chemical Engineering, Imperial College London, London, United Kingdom.
Athanasiou Thanos
Department of Surgery and Cancer, Imperial College London, London, United Kingdom.
Article Info
Journal
Frontiers in bioengineering and biotechnology
Abbr.
Front Bioeng Biotechnol
ISSN
2296-4185
Published
2021-00-00
电子出版
2021-00-18
页码
750656
Language
English
Country/Region
Switzerland
NLM ID
101632513
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