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Abstract

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Prediction of progression of coronary artery disease and clinical outcomes using vascular profiling of endothelial shear stress and arterial plaque characteristics: the PREDICTION Study Low shear stress induces endothelial reactive oxygen species via the AT1R/eNOS/NO pathway High Coronary Shear Stress in Patients With Coronary Artery Disease Predicts Myocardial Infarction Evolving insights into the role of local shear stress in late stent failure from neoatherosclerosis formation and plaque destabilization Role of local coronary blood flow patterns and shear stress on the development of microvascular and epicardial endothelial dysfunction and coronary plaque Implications of the local hemodynamic forces on the formation and destabilization of neoatherosclerotic lesions Role of endothelial dysfunction in determining angina after percutaneous coronary intervention: Learning from pathophysiology to optimize treatment TAVI Represents an Anti-Inflammatory Therapy via Reduction of Shear Stress Induced, Piezo-1-Mediated Monocyte Activation
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Original Research2020 Jul 18.

JOURNAL:Circulation. Article Link

TAVI Represents an Anti-Inflammatory Therapy via Reduction of Shear Stress Induced, Piezo-1-Mediated Monocyte Activation

S Baratchi, MTK Zaldivia, M Wallert et al. Keywords: Piezo-1; TAVI; aortic valve stenosis; high shear stress; low shear stress

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