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PMID: 41055863 Published · aheadofprint English Journal Article

Effects of vessel morphology on aortic hemodynamics: a statistical shape and CFD investigation.

Mazzoli M, Capellini K, Celi S

Abstract

Over the past few years, there has been an increase of clinical interest aimed at looking for correlations between morphology, extracted through statistical shape models (SSMs), and hemodynamics, extracted through computational fluid dynamics (CFD) simulations, in cardiovascular diseases. This study explores correlations between aortic morphology and hemodynamics in the thoracic aorta (TA). Existing research often simplifies geometries by excluding supra-aortic vessels due to software limitations in non-rigid registration. To overcome this, a novel algorithm was used to include these vessels in TA analysis. Principal component analysis reduced dimensionality, followed by automatic CFD simulations and correlation analysis between geometric and hemodynamic parameters. The first ( M 0 ) and second ( M 1 ) SSM modes explained 46.9 % and 22.4 % of dataset variance, respectively. Significant correlations were identified between M 0 and ascending TA aneurysm volume (Pr = 0.69), and M 1 and TA tortuosity (Pr = 0.60). Ten TA shapes were generated by varying standard deviations of M 0 and M 1 from -2 to +2, and CFD simulations revealed links between wall shear stress (WSS) indicators and TA morphology. This study presents a novel pipeline to analyze geometric and hemodynamic correlations using realistic TA geometries generated via SSM.

Keywords
Computational fluid dynamics Non-rigid registration Statistical shape model Supra-aortic vessels Thoracic aorta
作者与单位
共 3 位作者,点击展开单位 / ORCID
Mazzoli Marilena ORCID
BioCardioLab, UOC Bioingegneria, Fondazione Monasterio, Via Aurelia Sud, Massa, 54100, Italy. | Department of Information Engineering, University of Pisa, Via Caruso, Pisa, 56122, Italy.
Capellini Katia ORCID
BioCardioLab, UOC Bioingegneria, Fondazione Monasterio, Via Aurelia Sud, Massa, 54100, Italy.
Celi Simona ORCID
BioCardioLab, UOC Bioingegneria, Fondazione Monasterio, Via Aurelia Sud, Massa, 54100, Italy. [email protected].
Article Info
Journal
Medical & biological engineering & computing
Abbr.
Med Biol Eng Comput
ISSN
1741-0444
Corresponding email
Published
2025-10-07
电子出版
2025-00-07
Language
English
Country/Region
United States
NLM ID
7704869
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