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Clinical Trial Summary

The goal of this randomized, multicenter prospective study is to demonstrate that the activation of biventricular pacing with fusion and AV optimization feature will increase the rate of CRT responders in terms of LV reverse remodeling, compared with conventional biventricular pacing.


Clinical Trial Description

Treatment of HFrEF with CRT. CRT is an established guideline-recommended treatment for patients who are refractory to optimized pharmacologic therapy, and have reduced ejection fraction and increased QRS duration. It works by restoring atrioventricular, inter- and intra-ventricular synchrony and in so doing, it has been shown to improve symptoms, LV systolic function and survival. Nevertheless, a significant proportion of patients (30-45%) do not benefit after CRT and are considered non-respondent. Non-response to CRT is multifactorial (poor substrate to resynchronize, difficulty in the implant, age, gender, aetiology, and/or comorbidities). Recently, other negative determinants have been identified as cause of non-responding to CRT such as the lack of fusion of ventricular contraction with the intrinsic right ventricular conduction and non-optimal AV delay programming which, in turn, is related to the duration of PR interval. Another possible reason for non-responding to CRT is a non-optimal LV pacing site. The CRUSTY PLUS trial is aimed to establish the relevance for the success of CRT of these three factors: lack of fusion, non-optimized A-V conduction, and LV pacing site by comparing the response to CRT with a standard BIV device with fixed out-of-the-box A-V delay with that to a BIV device (Sync A-V plus) endowed with an algorithm which is continuously measuring the patients' A-V conduction and is able to adjust the stimulation parameters according to the measured PR interval, achieving a more dynamic A-V interval and allowing a perfect fusion of ventricular contraction. The algorithm is also able to optimize LV intraventricular synchrony. Sync A-V plus is endowed with a quadripolar multipoint pacing (MPP) CRT-D system allowing pacing of the LV with 2 vectors. This methodology allows a simultaneous earlier and wider excitation of ventricular tissue resulting in better synchronization and better cardiac output. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT06044597
Study type Interventional
Source Federico II University
Contact Antonio Rapacciuolo, Prof
Phone 0817462235
Email antonio.rapacciuolo@unina.it
Status Not yet recruiting
Phase N/A
Start date October 1, 2023
Completion date October 30, 2026

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