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PMID: 25224077 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Is MRI-based CFD able to improve clinical treatment of coarctations of aorta?

Annals of biomedical engineering ·Vol. 43 ·No. 1 ·2015-01-00 ·页码 168-76

Goubergrits L, Riesenkampff E, Yevtushenko P, Schaller J, Kertzscher U, Berger F, Kuehne T

Abstract

Pressure drop associated with coarctation of the aorta (CoA) can be successfully treated surgically or by stent placement. However, a decreased life expectancy associated with altered aortic hemodynamics was found in long-term studies. Image-based computational fluid dynamics (CFD) is intended to support particular diagnoses, to help in choosing between treatment options, and to improve performance of treatment procedures. This study aimed to prove the ability of CFD to improve aortic hemodynamics in CoA patients. In 13 patients (6 males, 7 females; mean age 25 ± 14 years), we compared pre- and post-treatment peak systole hemodynamics [pressure drops and wall shear stress (WSS)] vs. virtual treatment as proposed by biomedical engineers. Anatomy and flow data for CFD were based on MRI and angiography. Segmentation, geometry reconstruction and virtual treatment geometry were performed using the software ZIBAmira, whereas peak systole flow conditions were simulated with the software ANSYS(®) Fluent(®). Virtual treatment significantly reduced pressure drop compared to post-treatment values by a mean of 2.8 ± 3.15 mmHg, which significantly reduced mean WSS by 3.8 Pa. Thus, CFD has the potential to improve post-treatment hemodynamics associated with poor long-term prognosis of patients with coarctation of the aorta. MRI-based CFD has a huge potential to allow the slight reduction of post-treatment pressure drop, which causes significant improvement (reduction) of the WSS at the stenosis segment.

MeSH 主题词
Adolescent Adult Aortic Coarctation/diagnosis,physiopathology,therapy Child Female Hemodynamics Humans Hydrodynamics Magnetic Resonance Imaging Male Prognosis Stress, Mechanical Young Adult
作者与单位
共 7 位作者,点击展开单位 / ORCID
Goubergrits L
Biofluid Mechanics Laboratory, Charité - Universitätsmedizin Berlin, Augustenburger Platz 1, Berlin, 13353, Germany, [email protected].
Riesenkampff E
Yevtushenko P
Schaller J
Kertzscher U
Berger F
Kuehne T
Article Info
Journal
Annals of biomedical engineering
Abbr.
Ann Biomed Eng
ISSN
1573-9686
Corresponding email
Published
2015-01-00
电子出版
2014-00-16
页码
168-76
Language
English
Country/Region
United States
NLM ID
0361512
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