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Transcatheter Aortic Valve Replacement

科研文章

荐读文献

Extracellular Myocardial Volume in Patients With Aortic Stenosis Health Status After Transcatheter Versus Surgical Aortic Valve Replacement in Low-Risk Patients With Aortic Stenosis Minimalist transcatheter aortic valve replacement: The new standard for surgeons and cardiologists using transfemoral access? Determinants and Impact of Heart Failure Readmission Following Transcatheter Aortic Valve Replacement Comparison of 1-Year Pre- And Post-Transcatheter Aortic Valve Replacement Hospitalization Rates: A Population-Based Cohort Study Relationship between B-type natriuretic peptide and invasive haemodynamics in patients with severe aortic valve stenosis Thrombotic Versus Bleeding Risk After Transcatheter Aortic Valve Replacement: JACC Review Topic of the Week Prognostic implications of baseline 6‐min walk test performance in intermediate risk patients undergoing transcatheter aortic valve replacement Transcatheter Aortic Valve Replacement During Pregnancy Transcatheter Aortic Valve Replacement vs Surgical Replacement in Patients With Pure Aortic Insufficiency

Original Research2020 Dec 4;CIRCINTERVENTIONS120009496.

JOURNAL:Circ Cardiovasc Interv. Article Link

Risk of Coronary Obstruction and Feasibility of Coronary Access After Repeat Transcatheter Aortic Valve Replacement With the Self-Expanding Evolut Valve: A Computed Tomography Simulation Study

BJ Forrestal, BC Case, C Yerasi et al. Keywords: coronary obstruction; heart valves; TAVR; valve-in-valve

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BACKGROUND - The supra-annular leaflet position and tall stent frame of the self-expanding Evolut PRO or Evolut PRO+ transcatheter heart valves (THVs) may cause coronary occlusion during transcatheter aortic valve replacement (TAVR)-in-TAVR and present challenges for future coronary access. We sought to evaluate the risk of TAVR-in-TAVR with Evolut PRO or Evolut PRO+ THVs and the feasibility of future coronary access.


METHODS - The CoreValve Evolut PRO Prospective Registry (EPROMPT; NCT03423459) prospectively enrolled patients with symptomatic severe aortic stenosis to undergo TAVR using a commercially available latest generation self-expanding THV at 2 centers in the United States. Computed tomography was performed 30 days after TAVR, which we used to simulate TAVR-in-TAVR with a second Evolut PRO or Evolut PRO+ THV and evaluate for risk of coronary obstruction and feasibility of future coronary access.


RESULTS - Eighty-one patients enrolled with interpretable computed tomography are reported herein. Computed tomography simulation predicted sinus of Valsalva sequestration and resultant coronary obstruction during future TAVR-in-TAVR in up to 23% of patients. Computed tomography simulation predicted that the position of the pinned THV leaflets would hinder future coronary access in up to 78% of patients after TAVR-in-TAVR.


CONCLUSIONS - Further THV design improvements and leaflet modification strategies are needed to mitigate the risk of coronary obstruction during TAVR-in-TAVR with self-expanding THVs and to facilitate future coronary access.


REGISTRATION - URL: https://www.clinicaltrials.gov. Unique identifier: NCT03423459.