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Outcomes After Orbital Atherectomy of Severely Calcified Left Main Lesions: Analysis of the ORBIT II Study Orbital atherectomy for the treatment of small (2.5mm) severely calcified coronary lesions: ORBIT II sub-analysis Comparison of 2 Different Drug-Coated Balloons in In-Stent Restenosis: The RESTORE ISR China Randomized Trial A Notch3-Marked Subpopulation of Vascular Smooth Muscle Cells Is the Cell of Origin for Occlusive Pulmonary Vascular Lesions. Drug-Coated Balloon for De Novo Coronary Artery Disease: JACC State-of-the-Art Review In vivo comparison of lipid-rich plaque on near-infrared spectroscopy with histopathological analysis of coronary atherectomy specimens One-Year Outcomes of Orbital Atherectomy of Long, Diffusely Calcified Coronary Artery Lesions Effect of orbital atherectomy in calcified coronary artery lesions as assessed by optical coherence tomography Right ventricular expression of NT-proBNP adds predictive value to REVEAL score in patients with pulmonary arterial hypertension Healed coronary plaque rupture as a cause of rapid lesion progression: a case demonstrated with in vivo histopathology by directional coronary atherectomy

Clinical TrialVolume 13, Issue 5, March 2020

JOURNAL:JACC Cardiovasc Interv. Article Link

Prior Balloon Valvuloplasty Versus Direct Transcatheter Aortic Valve Replacement: Results From the DIRECTAVI Trial

F Leclercq, P Robert, M Akodad et al. Keywords: balloon aortic valvuloplasty vs TAVR; device success; direct implantation

ABSTRACT


OBJECTIVES - The aim of this study was to evaluate device success of transcatheter aortic valve replacement (TAVR) using new-generation balloon-expandable prostheses with or without balloon aortic valvuloplasty (BAV).

 

BACKGROUND - Randomized studies are lacking comparing TAVR without BAV against the conventional technique of TAVR with BAV.

 

METHODS - DIRECTAVI (Direct Transcatheter Aortic Valve Implantation) was an open-label noninferiority study that randomized patients undergoing TAVR using the Edwards SAPIEN 3 valve with or without prior balloon valvuloplasty. The primary endpoint was the device success rate according to Valve Academic Research Consortium-2 criteria, which was evaluated using a 7% noninferiority margin. The secondary endpoint included procedural and 30-day adverse events.

 

RESULTS - Device success was recorded for 184 of 236 included patients (78.0%). The rate of device success in the direct implantation group (n = 97 [80.2%]) was noninferior to that in the BAV group (n = 87 [75.7%]) (mean difference 4.5%; 95% confidence interval: ?4.4% to 13.4%; p = 0.02 for noninferiority). No severe prosthesis-patient mismatch or severe aortic regurgitation occurred in any group. In the direct implantation group, 7 patients (5.8%) required BAV to cross the valve. Adverse events were related mainly to pacemaker implantation (20.9% in the BAV group vs. 19.0% in the direct implantation group; p = 0.70). No significant difference was found between the 2 strategies in duration of procedure, contrast volume, radiation exposure, or rate of post-dilatation.

 

CONCLUSIONS - Direct TAVR without prior BAV was noninferior to the conventional strategy using BAV with new-generation balloon-expandable valves, but without procedural simplification. BAV was needed to cross the valve in a few patients, suggesting a need for upstream selection on the basis of patient anatomy. (TAVI Without Balloon Predilatation [of the Aortic Valve] SAPIEN 3 [DIRECTAVI]; NCT02729519)