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经导管主动脉瓣置换

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Minimalist transcatheter aortic valve replacement: The new standard for surgeons and cardiologists using transfemoral access? Computed tomography angiography-derived extracellular volume fraction predicts early recovery of left ventricular systolic function after transcatheter aortic valve replacement Impact of Pre-Existing and New-Onset Atrial Fibrillation on Outcomes After Transcatheter Aortic Valve Replacement Determinants and Impact of Heart Failure Readmission Following Transcatheter Aortic Valve Replacement Coronary Protection to Prevent Coronary Obstruction During TAVR: A Multicenter International Registry Cardiac surgery following transcatheter aortic valve replacement Impact of Incomplete Coronary Revascularization on Late Ischemic and Bleeding Events after Transcatheter Aortic Valve Replacement Prognostic Value of Computed Tomography-Derived Extracellular Volume in TAVR Patients With Low-Flow Low-Gradient Aortic Stenosis Coronary Access After TAVR With a Self-Expanding Bioprosthesis: Insights From Computed Tomography A Controlled Trial of Rivaroxaban After Transcatheter Aortic-Valve Replacement

Original Research2021 May 21;ezab217.

JOURNAL:Eur J Cardiothorac Surg. Article Link

Cardiac surgery following transcatheter aortic valve replacement

S Saha, S Peterss, C Mueller et al. Keywords: endocarditis; structural valve disease; TAVR; SAVR

ABSTRACT

OBJECTIVES - The objective of this study was to retrospectively analyse surgical outcomes of patients undergoing secondary cardiac surgery after initial transcatheter aortic valve replacement (TAVR).

METHODS - Between December 2012 and February 2020, a total of 41 consecutive patients underwent cardiac surgery after a TAVR procedure at our institution. Patients who underwent emergency operations due to periprocedural complications such as ventricular rupture and TAVR dislocation were excluded from this study (n = 12). Thus, 29 patients were included in the analysis. Data are presented as medians (25th-75th quartiles) or as absolute numbers (percentages).

RESULTS - The median age was 76 years (68-80); 58.6% were men. The median time to a secondary conventional procedure was 23 months (8-40), with 8 patients requiring surgical intervention within the first year post TAVR. The indications for secondary conventional procedures were prosthesis endocarditis (n = 15), prosthesis degeneration or dysfunction (n = 7) and progression of valvular, aortic or coronary artery disease (n = 7). Surgical redo aortic valve replacement was performed in 24 patients (82.8%). No complications involving the aortic root or the aortomitral continuity were observed. The operative mortality was 10.3%. Extracorporeal life support was required in 3 patients (10.3%) for a median duration of 3 days (3-3 days). No adverse cerebrovascular events were observed postoperatively. Postoperatively, 4 patients (13.8%) required a pacemaker and 7 patients (24.1%) required renal replacement therapy. Overall survival at 1 year was 83.0%.

CONCLUSIONS - Conventional cardiac surgical procedures following TAVR are feasible with reasonable results and a low complication rate.