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The Relation Between Optical Coherence Tomography-Detected Layered Pattern and Acute Side Branch Occlusion After Provisional Stenting of Coronary Bifurcation Lesions Spontaneous Coronary Artery Dissection: Pathophysiological Insights From Optical Coherence Tomography Relationship Between Coronary Artery Calcium and Atherosclerosis Progression Among Patients With Suspected Coronary Artery Disease Optical coherence tomography versus intravascular ultrasound to evaluate coronary artery disease and percutaneous coronary intervention Clinical Impact of Suboptimal Stenting and Residual Intrastent Plaque/Thrombus Protrusion in Patients With Acute Coronary Syndrome: The CLI-OPCI ACS Substudy (Centro per la Lotta Contro L'Infarto-Optimization of Percutaneous Coronary Intervention in Acute Coronary Syndrome) Angiography Alone Versus Angiography Plus Optical Coherence Tomography to Guide Percutaneous Coronary Intervention Outcomes From the Pan-London PCI Cohort Exercise unmasks distinct pathophysiologic features in heart failure with preserved ejection fraction and pulmonary vascular disease Histopathological validation of optical coherence tomography findings of the coronary arteries Characteristics of abnormal post-stent optical coherence tomography findings in hemodialysis patients Clinical use of intracoronary imaging. Part 1: guidance and optimization of coronary interventions. An expert consensus document of the European Association of Percutaneous Cardiovascular Interventions: Endorsed by the Chinese Society of Cardiology

Clinical TrialSeptember 2019

JOURNAL:JACC Cardiovasc Interv. Article Link

Left Ventricular Rapid Pacing Via the Valve Delivery Guidewire in Transcatheter Aortic Valve Implantation

B Faurie, G Souteyrand, the EASY TAVI investigators. Keywords: left-ventricular stimulation; left-ventricular pacing; transcatheter aortic valve implantation; transcatheter aortic valve replacement

ABSTRACT


BACKGROUND - Rapid ventricular pacing is necessary to ensure cardiac standstill during transcatheter aortic valve implantation (TAVI).

 

OBJECTIVES - We investigated whether left ventricular (LV)-stimulation via a guidewire reduced procedure duration while maintaining efficacy and safety compared with standard right ventricular (RV)-stimulation.

 

 

METHODS - This is a prospective, multicenter, single-blinded, superiority, randomized controlled trial. Patients undergoing transfemoral TAVI with a Sapien valve (Edwards Lifesciences) were allocated to LV- or RV-stimulation. The primary endpoint was procedure duration. Secondary endpoints included efficacy, safety, and cost at 30 days. This trial is registered at clinicaltrials.gov (NCT02781896).

 

RESULTS - Between May 2017 and May 2018, 307 patients were randomised but 4 were excluded because they did not receive the intended treatment: 303 patients were analysed in the LV- (n=151) or RV-stimulation (n=152) groups. Mean procedure duration was significantly shorter in the LV-stimulation group (48.4±16.9 vs. 55.6±26.9 min, p=0.0013), with a difference of -0.12 (95% CI -0.20 to -0.05) in the log transformed procedure duration (p=0.0012). Effective stimulation was similar in the LV- and RV-stimulation groups: 124 (84.9%) vs. 128 (87.1%), p=0.60. Safety of stimulation was also similar in the LV- and RV-stimulation groups: procedural success occurred in 151 (100%) vs. 151 (99.3%) patients (p=0.99); 30-day MACE-TAVI occurred in 21 (13.9%) vs. 26 (17.1%) patients (p=0.44); fluoroscopy time was lower in the LV-stimulation group (13.48±5.98 vs. 14.60±5.59, p=0.02) as was cost (18,807±1,318 vs. 19,437±2,318, p=0.001).

 

CONCLUSIONS -  Compared with RV-stimulation, LV-stimulation during TAVI was associated with significantly reduced procedure duration, fluoroscopy time, and cost, with similar efficacy and safety.