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Updated: Sep 29, 2026

Optimization of Transesophageal Atrial Pacing to Assess Atrial Fibrillation Susceptibility in Mice
Published on: June 29, 2022
Atrial electrophysiological properties evaluated by right and left atrial pacing in patients with or without atrial
Mien-Cheng Chen1, G Bih-Fang Guo, Hsueh-Wen Chang
1Department of Medicine, Chang Gung Memorial Hospital, Kaohsiung, Taiwan.
Insights
Coronary sinus pacing may prevent atrial fibrillation (AF) by creating differential conduction delays. This study found longer delays from the high right atrium to the coronary sinus in AF patients, suggesting a protective mechanism.
Area of Science:
- Electrophysiology
- Cardiology
Background:
- Coronary sinus (CS) pacing is known to prevent atrial fibrillation (AF) induction.
- The exact mechanisms, beyond suppressing atrial premature beats, are not fully understood.
Purpose of the Study:
- To investigate differential conduction delay between high right atrium (HRA) and distal CS pacing.
- To compare these delays in patients with and without paroxysmal AF.
Main Methods:
- Studied 9 patients with left accessory pathway undergoing ablation, divided into paroxysmal AF (Group 1) and no AF (Group 2).
- Measured effective refractory periods (ERPs) and interatrial conduction delay (ICD) between HRA and distal CS during HRA or distal CS pacing.
Main Results:
- Group 1 (AF patients) showed significantly longer ICD from HRA to distal CS during HRA pacing compared to distal CS to HRA during distal CS pacing.
- Group 2 (non-AF patients) did not exhibit this significant difference in ICD.
- A differential conduction delay was observed in patients with paroxysmal AF.
Conclusions:
- Differential conduction delay between HRA and distal CS pacing exists in patients with paroxysmal AF.
- Shorter conduction delay during distal CS pacing may contribute to preventing AF induction.
Abstract:
Coronary sinus (CS) pacing has been shown to prevent induction of atrial fibrillation (AF) by suppression of the propensity of atrial premature beats at high right atrium (HRA) to induce local conduction delay at the posterior triangle of Koch. However, other mechanisms of CS pacing in preventing induction of AF have not been explored. This study investigated whether a differential conduction delay exists between the HRA and distal CS pacing in patients with paroxysmal AF but not in patients without AF. Nine patients with atrioventricular reentrant tachycardia utilizing a left accessory pathway undergoing catheter ablation were included in this study. Group 1 consisted of 5 patients with clinically documented paroxysmal AF and group 2 4 patients without a history of AF. The effective refractory periods (ERPs) of HRA, distal CS, and four different left atrial sites were determined. The interatrial conduction time and conduction delay between the HRA and distal CS during HRA or distal CS pacing were measured. The interatrial conduction delay (ICD) from the HRA to the distal CS during HRA pacing was significantly longer than that from the distal CS to the HRA during distal CS pacing in patients of group 1. However, the ICD from the HRA to the distal CS during HRA pacing was not significantly longer than that from the distal CS to the HRA during distal CS pacing in group 2 patients. A differential conduction delay between the HRA and the distal CS pacing is present in this specific population of patients with paroxysmal AF but not in patients without AF. The shorter conduction delay during DCS pacing may contribute to the prevention of induction of AF.
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