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PMID: 35134596 Published · ppublish English Journal Article

Real time reduced order model for angiography fractional flow reserve.

Computer methods and programs in biomedicine ·Vol. 216 ·2022-04-00 ·页码 106674

Hashemi J, Patel B, Chatzizisis YS, Kassab GS

Abstract

Fractional flow reserve (FFR) is the gold standard for quantification of coronary stenosis and pressure wire is the gold standard for measuring FFR. Recently, computational fluid dynamics (CFD) methods have been used to compute FFR less invasively using images obtained from coronary angiography. This approach is, however, computationally intensive and solutions to reduce computation time are clearly required. We hypothesized that FFR can be calculated instantly using a reduced order model (ROM) derived using response surface method (RSM) for simulation modeling in lieu of the computationally intensive CFD. Specifically, eleven physiological and anatomical factors known to affect FFR were selected as input variables, and Plackett-Burman analysis was performed in conjunction with CFD on model arteries to identify set of variables affecting FFR the most. Based on the Box-Behnken design, a mathematical model was developed to compute FFR using the retained set of variables. The model fidelity was tested on a cohort of 90 patients (100 coronary arteries) with known pressure-wire FFR. FFR derived from this ROM had a strong correlation with pressure-wire FFR with sensitivity of 89.4%, specificity of 100% and area under curve of 0.947 (p < 0.05). The ROM method can be used to reliably calculate FFR in patients with coronary stenosis and able to replace time-consuming CFD-based FFR estimation and provide instead a real-time calculation method.

Keywords
Anatomical parameters Coronary artery stenosis Physiological parameters Reduced order method Response surface method
MeSH 主题词
Coronary Angiography/methods Coronary Stenosis/diagnostic imaging Coronary Vessels/diagnostic imaging Fractional Flow Reserve, Myocardial Humans Predictive Value of Tests Severity of Illness Index
作者与单位
共 4 位作者,点击展开单位 / ORCID
Hashemi Javad
California Medical Innovation Institute, San Diego, CA, USA.
Patel Bhavesh
California Medical Innovation Institute, San Diego, CA, USA.
Chatzizisis Yiannis S
Cardiovascular Division, University of Nebraska Medical Center, Omaha, NE, USA.
Kassab Ghassan S
California Medical Innovation Institute, San Diego, CA, USA. Electronic address: [email protected].
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
1872-7565
Corresponding email
Published
2022-04-00
电子出版
2022-00-01
页码
106674
Language
English
Country/Region
Ireland
NLM ID
8506513
基金资助
NHLBI NIH HHS · R01 HL144690 · United States
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