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September 10, 2005AJP Heart and Circulatory Physiology66 citations

Electrical connections between left superior pulmonary vein, left atrium, and ligament of Marshall: implications for mechanisms of atrial fibrillation

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ATAlex Y. TanCCChung-Chuan ChouSZShengmei Zhou

Key Result

Posterior LSPV ostial ablation slowed residual LA-PV conduction (P<0.001) and prevented reinduction of LSPV focal activations in all dogs.

PICO

P
Population
Atrial fibrillation (n=8)
I
Intervention / Comparator
Posterior ostial ablation vs Baseline (before ablation)
O
Primary Outcome
Residual LA-PV conduction and LSPV focal activations, p=<0.001

Main Result

p-value: p=<0.001

Abstract

The importance of the ligament of Marshall (LOM) to rapid activations within the left superior pulmonary vein (LSPV) during atrial fibrillation (AF) remains poorly understood. We aimed to characterize the importance of electrical coupling between the LSPV with the left atrium (LA) and the LOM in the generation of high-frequency activations within this PV. We performed high-density mapping of the LSPV-LA-LOM junction in eight dogs, using 1,344 electrodes with a 1-mm resolution before and after posterior ostial ablation to diminish PV-LA electrical connections. A LOM potential was recordable up to 6.5 mm (SD 2.2) into the LSPV in all dogs during sinus rhythm (SR) and LA pacing. Functional LOM-LSPV electrical connections bypassing the PV-LA junction were present in five of eight dogs. Direct LOM-LSPV connections contributed to 46.5% (SD 16.0) of LSPV activations during AF, resulting in a greater propensity to develop focal activations (P < 0.05) and a higher activation rate during AF of LSPVs with direct LOM connections compared with those without (P < 0.03). Posterior LSPV ostial ablation without damaging the anterior wall or LOM slowed residual LA-PV conduction (P < 0.001). This diminished PV-LA coupling prevented the reinduction of LSPV focal activations in all dogs. However, persistent LOM focal activations in two dogs continued to activate the LSPV rapidly cycle length 151.8 ms (SD 4.8) via direct LOM-LSPV connections. LOM-LSPV connection forms an accessory pathway that contributes to the electrical coupling between LSPV and LA during SR and AF. This pathway may contribute to rapid activations within the LSPV during AF.

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Cite This Study

Tan et al. (2005) studied Atrial fibrillation (n=8). Posterior ostial ablation vs. Baseline (before ablation) was evaluated on Residual LA-PV conduction and LSPV focal activations (p=<0.001). Posterior LSPV ostial ablation slowed residual LA-PV conduction (P<0.001) and prevented reinduction of LSPV focal activations in all dogs.

synapsesocial.com/papers/6a0f333b68065d64b26c917dhttps://doi.org/10.1152/ajpheart.00369.2005
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Junction Between the Left Atrium and the Pulmonary Veins1966 · 440 citations
  2. 2Characteristics of the Ventricular Insertion Sites of Accessory Pathways With Anterograde Decremental Conduction Properties1995 · 146 citations
  3. 3Reinduction of Atrial Fibrillation Immediately After Termination of the Arrhythmia Is Mediated by Late Phase 3 Early Afterdepolarization–Induced Triggered Activity2003 · 310 citations
  4. 4Relation Between Pulmonary Vein Firing and Extent of Left Atrial–Pulmonary Vein Connection in Patients With Atrial Fibrillation2004 · 36 citations
  5. 5Correlation Between Anatomy and Electrical Activation in Canine Pulmonary Veins2003 · 109 citations