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Updated: May 3, 2026

Optocardiography and Electrophysiology Studies of Ex Vivo Langendorff-perfused Hearts
Published on: November 7, 2019
Holter monitoring, sinoatrial conduction time, prognosis
Karol Makowski1, Elżbieta Kramarz
1Internal Medicine and Car diology Department, Military Institute of Medicine, Warsaw, Poland. ekramarz@wim.mil.pl.
Insights
The Holter method for calculating sinoatrial conduction time (SACT) effectively predicts future sinus node disease and the need for pacemakers in unexplained syncope patients.
Area of Science:
- Cardiology
- Electrophysiology
- Diagnostic Medicine
Background:
- Unexplained syncope poses a diagnostic challenge.
- Identifying patients at risk for sinus node disease and pacing needs is crucial.
Purpose of the Study:
- To assess the predictive value of Holter-derived sinoatrial conduction time (SACT) for future sinus node disease.
- To determine if SACT predicts the need for permanent pacing in syncope patients.
Main Methods:
- 218 patients with unexplained syncope underwent Holter monitoring.
- Sinoatrial conduction time (SACT) was calculated using atrial premature depolarizations.
- An abnormal SACT was defined as > 150 ms during daily activity.
Main Results:
- Over 48 months, 22 patients developed sinus node disease (18 with SACT > 150 ms).
- 16 patients required pacemakers (13 with SACT > 150 ms).
- Baseline SACT > 150 ms significantly predicted both outcomes (p < 0.01).
Conclusions:
- Holter-based SACT calculation is a valuable tool for risk stratification in syncope.
- Abnormal SACT identifies patients likely to develop sinus node disease or need pacing.
Background:
To evaluate the usefulness of the Holter method of sinoatrial conduction time (SACT) calculation in predicting the future occurrence of sinus node disease, and the emergence of indications for permanent pacing in patients with unexplained syncope.
Methods:
The study group included 218 patients (mean age 55 ± 17 years, 116 men) with syncope of unknown etiology in whom spontaneous atrial premature depolarizations (APDs) occurred during Holter monitoring and SACT could be calculated. A SACT value during daily activity > 150 ms was assumed as abnormal.
Results:
The prospective observation time was 48 ± 11 months. During follow-up sinus node disease was diagnosed in 22 persons, including 18 patients with baseline SACT > 150 ms and 4 with SACT < 150 ms. Indications for pacemaker implantation were found in 16 patients, including 13 patients with baseline SACT > 150 ms and 3 with SACT < 150 ms. In subjects with and without sinus node disease diagnosed during the observation period, baseline SACTvalues were 175 ± 52 ms and 87 ± 34 ms, respectively (p < 0.01), and in patients qualified and not qualified for permanent pacing, the respective values were 178 ± 59 ms and 81 ± 38 ms(p < 0.01). Multivariate Cox analysis showed a significant relationship between baseline SACT > 150 ms and a future diagnosis of sinus node disease and pacemaker implantation.
Conclusions:
The results suggest that the Holter method of SACT calculation is useful in predicting sinus node disease and indications for permanent pacing in patients with unexplained syncope.
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