High spatial endothelial shear stress gradient independently predicts site of acute coronary plaque rupture and erosion

Abstract Aims To investigate local haemodynamics in the setting of acute coronary plaque rupture and erosion. Methods and results Intracoronary optical coherence tomography performed in 37 patients with acute coronary syndromes caused by plaque rupture (n = 19) or plaque erosion (n = 18) was used fo...

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Veröffentlicht in:Cardiovascular research 2021-07, Vol.117 (8), p.1974-1985
Hauptverfasser: Thondapu, Vikas, Mamon, Chris, Poon, Eric K W, Kurihara, Osamu, Kim, Hyung Oh, Russo, Michele, Araki, Makoto, Shinohara, Hiroki, Yamamoto, Erika, Dijkstra, Jouke, Tacey, Mark, Lee, Hang, Ooi, Andrew, Barlis, Peter, Jang, Ik-Kyung
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Sprache:eng
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Zusammenfassung:Abstract Aims To investigate local haemodynamics in the setting of acute coronary plaque rupture and erosion. Methods and results Intracoronary optical coherence tomography performed in 37 patients with acute coronary syndromes caused by plaque rupture (n = 19) or plaque erosion (n = 18) was used for three-dimensional reconstruction and computational fluid dynamics simulation. Endothelial shear stress (ESS), spatial ESS gradient (ESSG), and oscillatory shear index (OSI) were compared between plaque rupture and erosion through mixed-effects logistic regression. Lipid, calcium, macrophages, layered plaque, and cholesterol crystals were also analysed. By multivariable analysis, only high ESSG [odds ratio (OR) 5.29, 95% confidence interval (CI) 2.57–10.89, P 
ISSN:0008-6363
1755-3245
DOI:10.1093/cvr/cvaa251