This will be a single arm study evaluating a new ablation technology for performing catheter ablation of ventricular tachycardia. The technology combines novel pulsed field ablation with radiofrequency ablation.
One of the limitations of conventional ventricular tachycardia (VT) ablation using radiofrequency (RF) energy is the inability to reach arrhythmogenic tissue deep in the myocardium. Pulsed field (PF) energy, which causes cell death via irreversible electroporation and is non-thermal, may improve outcomes in patients with VT since it has been shown to have better depth penetration in previously scarred tissue. Furthermore, the combination of RF and PF treatment in the same location can increase tissue lesion depth more than either energy alone. This can potentially minimize the need for epicardial ablations, or complex bipolar ablation strategies as well as associated procedural complications. RF and PF have been used extensively for atrial ablation. RF has been the mainstay for all VT ablation but PF use for VT is relatively new. Pre-clinical work of ventricular ablation procedures in a swine model evaluated the effects of combined and co-localized PF and RF application on cardiac lesion size and their corresponding histological changes. Compared to PF alone ablation, lesion depths and widths were significantly greater in both RF-PF and PF-RF applications. Histology for both combined lesions showed central thermal necrosis surrounded by a hemorrhagic and transitional PF zone. The findings provided evidence for appropriate use of combination therapy in clinical settings. The design of the study will be carried out as an interventional, prospective, multicenter, single-arm safety and effectiveness evaluation using the Biosense Webster PF/RF Ablation System. The study will enroll subjects with sustained symptomatic VT who are candidates for catheter ablation. Eligible subjects who sign the Informed Consent Form (ICF) and who meet all eligibility criteria will be enrolled and treated with the STSF Catheter in conjunction with the TRUPULSE™ Generator. A maximum sample size of 30 subjects is planned in the study. All study subjects will be followed-up for 6 months after the study procedure.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
30
We are using sequential application of radiofrequency and pulsed field ablation to increase lesion depth and better treat ventricular arrhythmias.
McGill University Health Centre
Montreal, Quebec, Canada
Montreal Heart Institute
Montreal, Quebec, Canada
IUCPQ
Québec, Quebec, Canada
Acute procedural success (elimination of all clinically relevant ventricular tachycardias)
Elimination of all clinically relevant ventricular tachycardias at the end of the procedure.
Time frame: 6 months
Primary Safety Outcome
Primary adverse events (PAE) within 7 days after ablation
Time frame: From ablation procedure until 7 days post-ablation
Freedom from ventricular tachycardia recurrence at 6 months post-ablation
Freedom from recurrence (symptomatic or asymptomatic) of monomorphic VT that was targeted at ablation at 6 months following the ablation procedure, plus additional failure modes including acute procedural failure, repeat ablation failure, non-study device failure, AAD failure
Time frame: From ablation until 6 months post-ablation
Secondary safety outcome
Primary adverse events at 7 days - 6 months after ablation
Time frame: From 7 days until 6 months post-ablation
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