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Transcatheter Aortic Valve Replacement

科研文章

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Safety and Efficacy of Transcatheter Aortic Valve Replacement With Continuation of Vitamin K Antagonists or Direct Oral Anticoagulants Computed tomography angiography-derived extracellular volume fraction predicts early recovery of left ventricular systolic function after transcatheter aortic valve replacement Decline in Left Ventricular Ejection Fraction During Follow-Up in Patients With Severe Aortic Stenosis Ambulatory Electrocardiogram Monitoring in Patients Undergoing Transcatheter Aortic Valve Replacement: JACC State-of-the-Art Review Transcatheter Versus Surgical Aortic Valve Replacement in Low-Risk Patients Valve‐in‐Valve for Degenerated Transcatheter Aortic Valve Replacement Versus Valve‐in‐Valve for Degenerated Surgical Aortic Bioprostheses: A 3‐Center Comparison of Hemodynamic and 1‐Year Outcome Precision Medicine in TAVR: How to Select the Right Device for the Right Patient Infective endocarditis after transcatheter aortic valve implantation: a nationwide study Incidence, predictors, and outcomes associated with acute kidney injury in patients undergoing transcatheter aortic valve replacement: from the BRAVO-3 randomized trial Impact of Incomplete Coronary Revascularization on Late Ischemic and Bleeding Events after Transcatheter Aortic Valve Replacement

Original Research2020 Sep 15;142(11):1092-1105.

JOURNAL:Circulation. Article Link

Transcatheter Aortic Valve Implantation 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: heart valve prosthesis implantation; hemodynamics; inflammation; mechanotransduction; monocytes; piezo-1 protein

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