Anomalous Atrioventricular Excitation (Wolff-Parkinson-White Syndrome)

PEDIATRICS ◽  
1959 ◽  
Vol 23 (5) ◽  
pp. 902-902

Vectorcardiographic and electrocardiographic data in 4 patients with the Wolff-Parkinson-White syndrome are presented. These studies support the concept that the mechanism responsible for the pre-excitation pattern is a functioning accessory neuromuscular bridge that by-passes the atrioventricular node. Early delivery of the impulse from the sino-auricular node to the lower chambers initiates premature ventricular activation with consequent shortening of the PR interval and lengthening of the QRS interval. Retrograde conduction through the accessory tract may be observed, and is a possible explanation of the atrial arrhythmias that occur in this syndrome.

1999 ◽  
Vol 90 (1) ◽  
pp. 60-65 ◽  
Author(s):  
Michael D. Sharpe ◽  
Daniel J. Cuillerier ◽  
John K. Lee ◽  
Magdi Basta ◽  
Andrew D. Krahn ◽  
...  

Background The effects of sevoflurane on the electrophysiologic properties of the human heart are unknown. This study evaluated the effects of sevoflurane on the electrophysiologic properties of the normal atrioventricular conduction system, and on the accessory pathways in patients with Wolff-Parkinson-White syndrome, to determine its suitability as an anesthetic agent for patients undergoing ablative procedures. Methods Fifteen patients with Wolff-Parkinson-White syndrome undergoing elective radiofrequency catheter ablation were studied. Anesthesia was induced with alfentanil (20-50 microg/kg) and midazolam (0.15 mg/kg), and vecuronium (20 mg) and maintained with alfentanil (0.5 to 2 microg x kg(-1) x min(-1)) and midazolam (1 or 2 mg every 10-15 min, as required). An electrophysiologic study measured the effective refractory period of the right atrium, atrioventricular node, and accessory pathway; the shortest conducted cycle length of the atrioventricular node and accessory pathway during atrial pacing; the effective refractory period of the right ventricle and accessory pathway; and the shortest retrograde conducted cycle length of the accessory pathway during ventricular pacing. Parameters of sinoatrial node function included sinus node recovery time, corrected sinus node recovery time, and sinoatrial conduction time. Intraatrial conduction time and the atrial-His interval were also measured. Characteristics of induced reciprocating tachycardia, including cycle length, atrial-His, His-ventricular, and ventriculoatrial intervals, also were measured. Sevoflurane was administered to achieve an end-tidal concentration of 2% (1 minimum alveolar concentration), and the study measurements were repeated. Results Sevoflurane had no effect on the electrophysiologic parameters of conduction in the normal atrioventricular conduction system or accessory pathway, or during reciprocating tachycardia. However, sevoflurane caused a statistically significant reduction in the sinoatrial conduction time and atrial-His interval but these changes were not clinically important. All accessory pathways were successfully identified and ablated. Conclusions Sevoflurane had no effect on the electrophysiologic nature of the normal atrioventricular or accessory pathway and no clinically important effect on sinoatrial node activity. It is therefore a suitable anesthetic agent for patients undergoing ablative procedures.


2019 ◽  
Vol 6 (4) ◽  
pp. 1
Author(s):  
Jonathan Lowenthal ◽  
Jack Xu ◽  
Eric Pagan ◽  
Richard Tangel ◽  
Daniel Schaer ◽  
...  

The manifestation of atrial flutter, particularly with 1:1 conduction, is rare in patients with ventricular preexcitation secondary to Wolff-Parkinson-White Syndrome (WPW). Very few cases have been reported in the literature. We present a 40-year old male with a history of untreated WPW who presented with severe chest pain and shortness of breath. He was found to have a rapid, regular, wide complex tachycardia. He underwent successful synchronized cardioversion, in which the patient converted tonormal sinus rhythm with classic WPW waveform characteristics, including a shortened PR interval and prolonged QRS complex with a slurred upstroke. Surprisingly, a subsequent electrophysiology study revealed atrial flutter, with bystander conduction of 1:1 atrial flutter being the most likely cause of the patient’s presenting symptoms, and a posteroseptal accessory pathway consistent with the diagnosis of WPW. While considerably rarer than ventricular tachycardia or AVRT, it is nevertheless important for clinicians to consider atrial flutter with 1:1 conduction as a potential diagnosis in patients with WPW presenting with wide complex tachycardia.


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