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December 1, 2002Journal of Cardiovascular Electrophysiology27 citations

Demonstration of Electrical and Anatomic Connections Between Marshall Bundles and Left Atrium in Dogs: Implications on the Generation of P Waves on Surface Electrocardiogram

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COChikaya OmichiCCChung‐Chuan ChouMLMoon‐Hyoung Lee

Key Result

Radiofrequency ablation of the connection between the coronary sinus and ligament of Marshall increased P wave duration from 65.3 to 70.5 msec (P=0.025) in dogs.

Structured PICO

Does severing the Marshall bundle alter atrial activation and P wave duration in dogs?

P
Population
11 dogs (4 for isolated perfused left atrium optical mapping, 7 for in vivo radiofrequency ablation and P wave study)
I
Intervention
Radiofrequency (RF) ablation of the connection between coronary sinus (CS) and the ligament of Marshall (LOM)
C
Comparator
Baseline (before RF ablation)
O
Outcome
Epicardial activation patterns and P wave durationsurrogate

The Marshall bundle provides an electrical conduit between the left atrial free wall and coronary sinus in dogs, contributing to the generation of the P wave on surface ECG.

Main Result

Absolute Event Rate: 70.5% vs 65.3%

p-value: p=0.025

Abstract

INTRODUCTION: The muscle bundles within the ligament of Marshall (LOM) are electrically active. The importance of these muscle bundles (Marshall bundle MB) to atrial activation and the generation of the ECG P wave is unclear. METHODS AND RESULTS: We used optical mapping techniques to study epicardial activation patterns in isolated perfused left atrium in four dogs. In another seven dogs, P waves were studied before and after in vivo radiofrequency (RF) ablation of the connection between coronary sinus (CS) and the LOM. Computerized mapping was performed before and after RF ablation. Optical mapping studies showed that CS pacing resulted in broad wavefronts propagating from the middle and distal LOM directly to the adjacent left atrium (LA). Serial sections showed direct connection between MB and LA near the orifice of the left superior pulmonary vein in two dogs. In vivo studies showed that MB potentials were recorded in three dogs. After ablation, the duration of P waves remained unchanged. In the other four dogs, MB potentials were not recorded. Computerized mapping showed that LA wavefronts propagated to the MB region via LA-MB connection and then excited the CS. After ablation, the activation of CS muscle sleeves is delayed, and P wave duration increased from 65.3 +/- 14.9 msec to 70.5 +/- 17.2 msec (P = 0.025). CONCLUSION: In about half of the normal dogs, MB provides an electrical conduit between LA free wall and CS. Severing MB alters the atrial activation and lengthens the P wave. MB contributes to generation of the P wave on surface ECG.

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Cite This Study

Omichi et al. (2002) studied Normal dogs (n=11). Radiofrequency ablation of the connection between coronary sinus and ligament of Marshall vs. Before ablation was evaluated on P wave duration (p=0.025). Radiofrequency ablation of the connection between the coronary sinus and ligament of Marshall increased P wave duration from 65.3 to 70.5 msec (P=0.025) in dogs.

synapsesocial.com/papers/6a0f333b68065d64b26c917ehttps://doi.org/10.1046/j.1540-8167.2002.01283.x
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