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May 1, 1999Cardiovascular Research230 citationsOpen Access

Reversal of atrial electrical remodeling following cardioversion of long-standing atrial fibrillation in man

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YWYu Wang

Key Result

Restoration of sinus rhythm following cardioversion of chronic atrial fibrillation gradually prolonged the shortened atrial effective refractory period and improved its impaired rate adaptation.

Study Design

Type

Observational (n=39)

Structured PICO

Does cardioversion to sinus rhythm reverse atrial electrical remodeling in patients with chronic atrial fibrillation?

P
Population
19 patients with chronic atrial fibrillation of more than six months duration (mean age 64 +/- 14 years) and 20 age-matched controls without a history of atrial tachyarrhythmia. Total n=39.
I
Intervention
Cardioversion to sinus rhythm with an external defibrillator, followed by pacing at cycle lengths of 300, 400, 500, 600, and 700 ms.
C
Comparator
Age-matched controls without a history of atrial tachyarrhythmia (for baseline comparison) and longitudinal self-comparison (post-cardioversion over 4 days).
O
Outcome
Atrial effective refractory periods (AERP) at right atrial appendage and distal coronary sinus, and rate adaptation response measured at 30 min post-cardioversion and daily for 4 days.surrogate

Restoration and maintenance of sinus rhythm via cardioversion in patients with chronic atrial fibrillation reverses atrial electrical remodeling, specifically by prolonging the atrial effective refractory period and improving rate adaptation.

Abstract

BACKGROUND: In animal studies, atrial fibrillation has been shown to shorten the atrial refractory period and impair its rate adaptation. However, little is known about the effects of chronic atrial fibrillation on atrial electrophysiology and its recovery course in humans. METHODS AND RESULTS: Nineteen patients, mean age 64 +/- 14 years, with chronic atrial fibrillation of more than six months duration were included in this study. All of them were successfully converted to sinus rhythm with an external defibrillator. Atrial effective refractory periods at right atrial appendage and distal coronary sinus were determined with five pacing cycle lengths (300, 400, 500, 600 and 700 ms) at 30 min after cardioversion and once a day for four days. The atrial conduction properties, including P wave duration of surface ECG, and right and left atrial conduction times, were also measured at the same time interval. Twenty age-matched patients without a history of atrial tachyarrhythmia were evaluated as controls. In comparison with controls, chronic atrial fibrillation significantly shortened the atrial effective refractory period, impaired its rate adaptation response, especially at distal coronary sinus, and depressed the conduction properties of atria. The atrial conduction properties did not change during the four-day follow-up period; however, the atrial effective refractory period was gradually prolonged and its rate adaptation response improved after restoration of sinus rhythm. CONCLUSIONS: In humans, chronic atrial fibrillation significantly shortened the atrial effective refractory period, and impaired its rate adaptation response. Restoration and maintenance of sinus rhythm could reverse these electrophysiological changes.

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Cite This Study

Yu Wang (1999) conducted an observational in Chronic atrial fibrillation (n=39). Cardioversion to sinus rhythm vs. Age-matched controls without a history of atrial tachyarrhythmia was evaluated on Atrial effective refractory period and its rate adaptation response. Restoration of sinus rhythm following cardioversion of chronic atrial fibrillation gradually prolonged the shortened atrial effective refractory period and improved its impaired rate adaptation.

synapsesocial.com/papers/6a0ee43b1c5e2d2319fa0b9fhttps://doi.org/10.1016/s0008-6363(99)00030-9
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