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PMID: 30808598 Published · ppublish English Journal Article

Mechanisms of Myocardial Ischemia Inducing Sudden Cardiac Death in Athletes with Anomalous Coronary Origin from the Opposite Sinus: Insights from a computational fluid dynamic study.

Cardiovascular revascularization medicine : including molecular interventions ·Vol. 20 ·No. 12 ·2019-12-00 ·页码 1112-1116

Rigatelli G, Zuin M, Galasso P, Carraro M, D'Elia K, Daniela L, Roncon L, Truyen TTTT, Nguyen T

Abstract

The left coronary anomalous origin from the opposite sinus (L- ACAOS) constitutes the most clinically relevant arterial abnormality among the wide spectrum of coronary artery anomalies. We investigated the physiology of L-ACAOS with and without intramural course (IM) in athletes, using the computational fluid dynamic (CFD) analysis. The coronary artery circulation with L-ACAOS with and without IM has been segmented and then reconstructed, after reviewing both the angiographic and computed tomography findings of 13 consecutive athletes (10 males, mean age 45.1 ± 8.2 years) with L-ACAOS collected in our institution between 1st January 2003 and 1st January 2018. Vorticity magnitude, static pressure and wall shear stress (WSS) have been analysed in a model of L-ACAOS with no IM course and in L-ACAOS-IM at rest and during exercise. The mean vorticity magnitude and WSS significantly increased from rest to exercise in both models, in right coronary artery, left anterior descending and left circumflex coronary arteries. The mean static pressure significantly increased with exercise in IM (1.118e + 004 vs 1.164e + 004 Pa, p < 0.001) as well as the mean vorticity magnitude and the mean WSS (7012.78 1/s vs 9019.56 1/s, p < 0.001, Δ = 2006.78 1/s and 3.02 Pa vs 2.11 Pa, p < 0.001, Δ = 0.91 Pa). This net increment was transmitted to the entire left coronary system in L-ACAOS-IM but not in L-ACAOS with no IM. In L-ACAOS, different hemodynamic parameters observed in the intramural segment seem to confirm that IM is compressed during exercise. These rheological properties might propagated along the left coronary system, potentially predisposing, if confirmed in vivo, distal coronary segments to a higher risk of spasm and thrombosis in athletes.

Keywords
Computed fluid dynamic Coronary artery anomalies Sudden death
MeSH 主题词
Adult Athletes Computed Tomography Angiography Coronary Angiography Coronary Circulation Coronary Sinus/abnormalities,diagnostic imaging,physiopathology Coronary Vessel Anomalies/complications,diagnostic imaging,physiopathology Death, Sudden, Cardiac/etiology Female Humans Hydrodynamics Male Middle Aged Models, Cardiovascular Myocardial Ischemia/diagnostic imaging,etiology,mortality,physiopathology Patient-Specific Modeling Risk Factors
作者与单位
共 9 位作者,点击展开单位 / ORCID
Rigatelli Gianluca
Cardiovascular Diagnosis and Endoluminal Interventions Unit, Rovigo General Hospital, Rovigo, Italy. Electronic address: [email protected].
Zuin Marco
Section of Internal and Cardiopulmonary Medicine, University of Ferrara, Ferrara, Italy; Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
Galasso Paola
Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
Carraro Mauro
Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
D'Elia Katia
Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
Daniela Lanza
Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
Roncon Loris
Division of Cardiology, Rovigo General Hospital, Rovigo, Italy.
Truyen Tai T T T
Tan Tao University, School of Medicine, Long An, Viet Nam.
Nguyen Thach
Tan Tao University, School of Medicine, Long An, Viet Nam; Cardiovascular Research, Methodist Hospital, Merrillville, IN, USA.
Article Info
Journal
Cardiovascular revascularization medicine : including molecular interventions
Abbr.
Cardiovasc Revasc Med
ISSN
1878-0938
Corresponding email
Published
2019-12-00
电子出版
2019-00-31
页码
1112-1116
Language
English
Country/Region
United States
NLM ID
101238551
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