Arrhythmia Risk in Conduction System Pacing
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AI plain-English summaryA standard pacemaker for heart failure creates an electrical pattern that can itself trigger dangerous heart rhythms. This fellowship directly compares a newer pacing method—conduction system pacing (CSP)—with the current standard, biventricular pacing (BVP), to see which is safer over the long term. The problem is that BVP, while improving the heart’s pumping ability, produces an unnatural electrical recovery pattern that can set the stage for ventricular arrhythmias—potentially fatal fast heartbeats. CSP mimics the heart’s natural electrical activation more closely, but its long-term effects on arrhythmia risk are unknown. This study will use high-resolution electrical mapping to measure repolarisation heterogeneity—a key marker of arrhythmia risk—in patients receiving each type of pacing. It will also test how the heart responds to simulated arrhythmia triggers and analyse 24-hour ECG recordings to capture real-world heart-rate variability. If CSP proves to reduce arrhythmia risk, it could lower the need for implantable defibrillators and their associated complications—infections, lead fractures, inappropriate shocks. This would directly improve quality of life for thousands of heart failure patients and reduce long-term healthcare costs. The findings will also guide future clinical trial design for cardiac resynchronisation therapy.
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