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Transcatheter Aortic Valve Replacement

科研文章

荐读文献

Transcatheter Aortic Valve Implantation Represents an Anti-Inflammatory Therapy Via Reduction of Shear Stress-Induced, Piezo-1-Mediated Monocyte Activation Third-Generation Balloon and Self-Expandable Valves for Aortic Stenosis in Large and Extra-Large Aortic Annuli From the TAVR-LARGE Registry Bioprosthetic valve oversizing is associated with increased risk of valve thrombosis following TAVR 2020 ACC Expert Consensus Decision Pathway on Management of Conduction Disturbances in Patients Undergoing Transcatheter Aortic Valve Replacement A Report of the American College of Cardiology Solution Set Oversight Committee Decline in Left Ventricular Ejection Fraction During Follow-Up in Patients With Severe Aortic Stenosis Comparison of newer generation self-expandable vs. balloon-expandable valves in transcatheter aortic valve implantation: the randomized SOLVE-TAVI trial Association of Smoking Status With Long‐Term Mortality and Health Status After Transcatheter Aortic Valve Replacement: Insights From the Society of Thoracic Surgeons/American College of Cardiology Transcatheter Valve Therapy Registry Cardiac surgery following transcatheter aortic valve replacement Computed tomography angiography-derived extracellular volume fraction predicts early recovery of left ventricular systolic function after transcatheter aortic valve replacement Health Status After Transcatheter Versus Surgical Aortic Valve Replacement in Low-Risk Patients With Aortic Stenosis

Original Research2021 May 4;S0022-5223(21)00767-4.

JOURNAL:J Thorac Cardiovasc Surg. Article Link

Outcomes of procedural complications in transfemoral transcatheter aortic valve replacement

ED Percy, M Harloff, T Kaneko et al. Keywords: bundle branch block; pacemaker; paravalvular leak; stroke; survival; TAVR

ABSTRACT

OBJECTIVES - As the application of transcatheter aortic valve replacement (TAVR) expands, the longitudinal implications of periprocedural complications are increasingly relevant. We examine the influence of TAVR complications on midterm survival.

 

METHODS - Patients undergoing transfemoral TAVR at our institution between November 2011 and June 2018 were reviewed. Stroke severity was classified according to the National Institutes of Health stroke score. Kaplan-Meier analysis was used to assess survival, and a Cox proportional hazards model was created to examine independent associations with survival. The median follow-up time was 36 months for a total of 2789 patient-years.

 

RESULTS - Overall, 866 patients were included. The mean age was 80 ± 9.5 years and mean Society of Thoracic Surgeons score was 4.8% ± 2.7%. The mortality rate at 30-days was 2.8% and 11.8% at 1 year. In-hospital left bundle branch block and 30-day permanent pacemaker insertion occurred in 14.8% and 7.9%, respectively. Postprocedural greater-than-mild paravalvular leak was present in 4.4% and stroke occurred in 3.8% at 30-days. Greater-than-mild paravalvular leak was associated with decreased survival at 2 years (P = .02), but not at 5 years. Severe stroke was independently associated with decreased survival at 5 years (hazard ratio, 5.73; 95% confidence interval, 2.29-14.36; P .001); however, the effect of nonsevere stroke did not reach significance (hazard ratio, 1.69; 95% confidence interval, 0.82-3.47; P = .152).

 

CONCLUSIONS - Severe stroke was independently associated with decreased 5-year survival and initial risks associated with paravalvular leak may be attenuated over the midterm following transfemoral TAVR. Strategies to minimize the incidence of stroke and paravalvular leak must be prioritized to improve longitudinal outcomes after TAVR.