Key result
Virtual ablation of peak dominant frequency zones achieves 100% AF defragmentation at faster conduction velocities.
Why the study?
Does virtual dominant frequency ablation improve AF termination or defragmentation rates under different conduction velocity conditions in an in-silico 3D-AF model?
Does virtual dominant frequency ablation improve AF termination or defragmentation rates under different conduction velocity conditions in an in-silico 3D-AF model?
Absolute Event Rate: 37.8% vs 100%
p-value: p=<0.001
In an in-silico 3D model, the effectiveness of virtual dominant frequency ablation for atrial fibrillation was highly dependent on conduction velocity, being less effective in conditions with spatiotemporally unstable rotors.
Virtual DF ablation efficacy varies with conduction velocity in 3D models; leaves open optimal targeting for human AF ablation.
BACKGROUND: We previously reported that stable rotors are observed in in-silico human atrial fibrillation (AF) models, and are well represented by a dominant frequency (DF). In the current study, we hypothesized that the outcome of DF ablation is affected by conduction velocity (CV) conditions and examined this hypothesis using in-silico 3D-AF modeling. METHODS: We integrated 3D CT images of left atrium obtained from 10 patients with persistent AF (80% male, 61.8±13.5 years old) into in-silico AF model. We compared AF maintenance durations (max 300s), spatiotemporal stabilities of DF, phase singularity (PS) number, life-span of PS, and AF termination or defragmentation rates after virtual DF ablation with 5 different CV conditions (0.2, 0.3, 0.4, 0.5, and 0.6m/s). RESULTS: 1. AF maintenance duration (p<0.001), spatiotemporal mean variance of DF (p<0.001), and the number of PS (p = 0.023) showed CV dependent bimodal patterns (highest at CV0.4m/s and lowest at CV0.6m/s) consistently. 2. After 10% highest DF ablation, AF defragmentation rates were the lowest at CV0.4m/s (37.8%), but highest at CV0.5 and 0.6m/s (all 100%, p<0.001). 3. In the episodes with AF termination or defragmentation followed by 10% highest DF ablation, baseline AF maintenance duration was shorter (p<0.001), spatiotemporal mean variance of DF was lower (p = 0.014), and the number of PS was lower (p = 0.004) than those with failed AF defragmentation after DF ablation. CONCLUSION: Virtual ablation of DF, which may indicate AF driver, was more likely to terminate or defragment AF with spatiotemporally stable DF, but not likely to do so in long-lasting and sustained AF conditions, depending on CV.
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Lim et al. (2017) studied Persistent Atrial Fibrillation (n=10). Virtual dominant frequency (DF) ablation vs. Different conduction velocity (CV) conditions (0.2 to 0.6 m/s) was evaluated on AF defragmentation rate after 10% highest DF ablation (p=<0.001). Virtual ablation of the highest 10% dominant frequency area resulted in the lowest AF defragmentation rate at a conduction velocity of 0.4 m/s (37.8%) and the highest at 0.5 and 0.6 m/s (100%, p<0.001).
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