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PMID: 37733110 Published · ppublish English Journal Article

Blood Flow Energy Identifies Coronary Lesions Culprit of Future Myocardial Infarction.

Annals of biomedical engineering ·Vol. 52 ·No. 2 ·2024-02-00 ·页码 226-238

Lodi Rizzini M, Candreva A, Mazzi V, Pagnoni M, Chiastra C, Aben JP, Fournier S, Cook S, Muller O, De Bruyne B, Mizukami T, Collet C, Gallo D, Morbiducci U

Abstract

The present study establishes a link between blood flow energy transformations in coronary atherosclerotic lesions and clinical outcomes. The predictive capacity for future myocardial infarction (MI) was compared with that of established quantitative coronary angiography (QCA)-derived predictors. Angiography-based computational fluid dynamics (CFD) simulations were performed on 80 human coronary lesions culprit of MI within 5 years and 108 non-culprit lesions for future MI. Blood flow energy transformations were assessed in the converging flow segment of the lesion as ratios of kinetic and rotational energy values (KER and RER, respectively) at the QCA-identified minimum lumen area and proximal lesion sections. The anatomical and functional lesion severity were evaluated with QCA to derive percentage area stenosis (%AS), vessel fractional flow reserve (vFFR), and translesional vFFR (ΔvFFR). Wall shear stress profiles were investigated in terms of topological shear variation index (TSVI). KER and RER predicted MI at 5 years (AUC = 0.73, 95% CI 0.65-0.80, and AUC = 0.76, 95% CI 0.70-0.83, respectively; p < 0.0001 for both). The predictive capacity for future MI of KER and RER was significantly stronger than vFFR (p = 0.0391 and p = 0.0045, respectively). RER predictive capacity was significantly stronger than %AS and ΔvFFR (p = 0.0041 and p = 0.0059, respectively). The predictive capacity for future MI of KER and RER did not differ significantly from TSVI. Blood flow kinetic and rotational energy transformations were significant predictors for MI at 5 years (p < 0.0001). The findings of this study support the hypothesis of a biomechanical contribution to the process of plaque destabilization/rupture leading to MI.

Keywords
Computational fluid dynamics Fractional flow reserve Kinetic energy Myocardial infarction Quantitative coronary angiography Rotational energy Wall shear stress
MeSH 主题词
Humans Coronary Artery Disease Fractional Flow Reserve, Myocardial Coronary Vessels Myocardial Infarction Coronary Angiography Coronary Stenosis Predictive Value of Tests Severity of Illness Index
作者与单位
共 14 位作者,点击展开单位 / ORCID
Lodi Rizzini Maurizio
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy.
Candreva Alessandro
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy. | Department of Cardiology, Zurich University Hospital, Zurich, Switzerland.
Mazzi Valentina
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy.
Pagnoni Mattia
Department of Cardiology, Lausanne University Hospital, Lausanne, Switzerland.
Chiastra Claudio
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy.
Aben Jean-Paul
Pie Medical Imaging BV, Maastricht, The Netherlands.
Fournier Stephane
Department of Cardiology, Lausanne University Hospital, Lausanne, Switzerland. | Department of Advanced Biomedical Sciences, University of Naples Federico II, Naples, Italy.
Cook Stephane
Department of Cardiology, HFR Fribourg, Fribourg, Switzerland.
Muller Olivier
Department of Cardiology, Lausanne University Hospital, Lausanne, Switzerland.
De Bruyne Bernard
Cardiovascular Center Aalst, OLV-Clinic, Aalst, Belgium.
Mizukami Takuya
Cardiovascular Center Aalst, OLV-Clinic, Aalst, Belgium.
Collet Carlos
Cardiovascular Center Aalst, OLV-Clinic, Aalst, Belgium.
Gallo Diego
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy.
Morbiducci Umberto ORCID
PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Turin, Italy. [email protected].
Article Info
Journal
Annals of biomedical engineering
Abbr.
Ann Biomed Eng
ISSN
1573-9686
Corresponding email
Published
2024-02-00
电子出版
2023-00-21
页码
226-238
Language
English
Country/Region
United States
NLM ID
0361512
基金资助
Ministero dell'Istruzione, dell'Università e della Ricerca · FISR2019_03221
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