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PMID: 24460213 Published · ppublish English Journal Article

Computational fluid dynamics simulation to evaluate aortic coarctation gradient with contrast-enhanced CT.

Computer methods in biomechanics and biomedical engineering ·Vol. 18 ·No. 10 ·2015-08-00 ·页码 1066-1071

Rinaudo A, D'Ancona G, Baglini R, Amaducci A, Follis F, Pilato M, Pasta S

Abstract

Coarctation of aorta (CoA) is a narrowing of the aorta leading to a pressure gradient (ΔP) across the coarctation, increased afterload and reduced peripheral perfusion pressures. Indication to invasive treatment is based on values of maximal (systolic) trans-coarctation ΔP. A computational fluid dynamic (CFD) approach is herein presented for the non-invasive haemodynamic assessment of ΔP across CoA. Patient-specific CFD simulations were created from contrast-enhanced computed tomography (CT) and appropriate flow boundary conditions. Computed ΔP was validated with invasive intravascular trans-CoA pressure measurements. Haemodynamic indices, including pressure loss coefficient (PLc), time-averaged wall shear stress (TAWSS) and oscillatory shear index (OSI), were also quantified. CFD-estimated ΔP values were comparable to the invasive ones. Moreover, the aorta proximal to CoA was exposed to altered TAWSS and OSI suggesting hypertension. PLc was found as a further geometric marker of CoA severity. Finally, CFD-estimated ΔP confirmed a significant reduction after percutaneous balloon dilatation and stenting of the CoA in one patient (e.g. from ΔP∼52 mmHg to ΔP∼3 mmHg). The validation of the ΔP computations with catheterisation measurements suggests that CFD simulation, based on CT-derived anatomical data, is a useful tool to readily quantify CoA severity.

Keywords
coarctation of aorta computational fluid dynamics contrast-enhanced computed tomography pressure gradient
作者与单位
共 7 位作者,点击展开单位 / ORCID
Rinaudo Antonino
a Dipartimento di Ingegneria Chimica , Gestionale, Informatica e Meccanica, Universita' di Palermo , Viale delle Scienze Ed. 8, 90128 Palermo , Italy.
D'Ancona Giuseppe
Baglini Roberto
Amaducci Andrea
Follis Fabrizio
Pilato Michele
Pasta Salvatore
Article Info
Journal
Computer methods in biomechanics and biomedical engineering
Abbr.
Comput Methods Biomech Biomed Engin
ISSN
1476-8259
Published
2015-08-00
电子出版
2014-00-27
页码
1066-1071
Language
English
Country/Region
England
NLM ID
9802899
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