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PMID: 30384262 Published · ppublish English Journal Article

The relationship between coronary lesion characteristics and pathologic shear in human coronary arteries.

Clinical biomechanics (Bristol, Avon) ·Vol. 60 ·2018-00-00 ·页码 177-184

Javadzadegan A, Moshfegh A, Qian Y, Ng MKC, Kritharides L, Yong ASC

Abstract

Pathological shear stress is associated with distinct pathogenic biological pathways relevant to coronary thrombosis and atherogenesis. Although the individual effects of lesion characteristics including stenosis severity, eccentricity and lesion length on coronary haemodynamics is known, their relative importance remains poorly understood. Computational fluid dynamics (CFD) was implemented for haemodynamic analysis of 104 coronary arteries. For each coronary artery, maximum shear stress at the site of maximal stenosis, average shear stress over the sites of maximal stenosis segment, average shear stress in the proximal segments and average shear stress in the distal segments were determined. In addition, the area of low wall shear stress (ALWSS) sites in post-stenotic regions were quantified as a proportion of the vessel segment. With increasing stenosis severity, eccentricity and lesion length, maximal and average shear stress over the sites of maximal stenosis and ALWSS increased whereas average shear stress in the proximal segments decreased. Two-way ANCOVA analysis revealed that stenosis severity and lesion length were both independent predictors of maximum shear at the site of maximal stenosis [F (1, 104) = 10.94, P = 0.001 for diameter stenosis and F (1, 104) = 6.21, P = 0.014 for lesion length] and ALWSS [F (1, 104) = 66.10, P = 0.001 for diameter stenosis and F (1, 104) = 4.23, P = 0.047 for lesion length]. Our findings demonstrate that although all lesion characteristics correlate with abnormal shear stress, only stenosis severity and lesion length are independent predictors of pathogenic physiological processes.

Keywords
Area of low shear stress regions Computational fluid dynamics Coronary artery Lesion morphology Shear stress profile
MeSH 主题词
Aged Computer Simulation Constriction, Pathologic Coronary Artery Disease/physiopathology Coronary Thrombosis/physiopathology Coronary Vessels/injuries,physiopathology Female Hemodynamics Humans Hydrodynamics Imaging, Three-Dimensional Male Middle Aged Shear Strength Stress, Mechanical
作者与单位
共 6 位作者,点击展开单位 / ORCID
Javadzadegan Ashkan
Faculty of Medicine and Health Sciences, Macquarie University, Sydney, Australia; ANZAC Research Institute, The University of Sydney, Sydney, Australia. Electronic address: [email protected].
Moshfegh Abouzar
Faculty of Medicine and Health Sciences, Macquarie University, Sydney, Australia; ANZAC Research Institute, The University of Sydney, Sydney, Australia.
Qian Yi
Faculty of Medicine and Health Sciences, Macquarie University, Sydney, Australia.
Ng Martin K C
Department of Cardiology, Royal Prince Alfred Hospital, The University of Sydney, Sydney, Australia.
Kritharides Leonard
ANZAC Research Institute, The University of Sydney, Sydney, Australia; Department of Cardiology, Concord Hospital, The University of Sydney, Sydney, Australia.
Yong Andy S C
Faculty of Medicine and Health Sciences, Macquarie University, Sydney, Australia; ANZAC Research Institute, The University of Sydney, Sydney, Australia; Department of Cardiology, Concord Hospital, The University of Sydney, Sydney, Australia.
Article Info
Journal
Clinical biomechanics (Bristol, Avon)
Abbr.
Clin Biomech (Bristol, Avon)
ISSN
1879-1271
Corresponding email
Published
2018-00-00
电子出版
2018-00-28
页码
177-184
Language
English
Country/Region
England
NLM ID
8611877
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