Why the study?
Low voltage areas are most commonly observed on the left atrial septal/anterior wall, motivating an exploration of the mechanisms of left atrial septal/anterior wall reentrant tachycardias using ultrahigh resolution mapping.
Does ultrahigh resolution mapping and tailor-made ablation eliminate left atrial septal/anterior wall reentrant tachycardias in affected patients?
Does ultrahigh resolution mapping and tailor-made ablation eliminate left atrial septal/anterior wall reentrant tachycardias in affected patients?
Ultrahigh resolution mapping effectively identifies both fixed and functional conduction blocks in left septal and anterior wall reentrant atrial tachycardias, guiding successful targeted ablation.
Ultrahigh-resolution mapping may delineate scar-related LASART circuits; leaves open whether this improves ablation outcomes.
BACKGROUND: Low voltage areas (LVAs) are most commonly observed on the left atrial (LA) septal/anterior wall. OBJECTIVE: We explored the mechanisms of LA septal/anterior wall reentrant tachycardias (LASARTs) using ultrahigh resolution mapping. METHODS: This study included seven consecutive LASARTs in six patients (75 [62.2-82.8] years, 4 women) who underwent atrial tachycardia (AT) mapping and ablation using Rhythmia systems. RESULTS: of dense scar was identified in four patients. Five ATs rotated around dense scar, while two rotated around functional linear block, which was confirmed during atrial pacing after AT termination. The AT circuit length was 8.7 ± 2.1 cm with a conduction velocity of 30.4 ± 3.7 cm/s. A median of 3.0 (2.0-4.0) slow conduction areas per circuit were identified, and 17/23 (73.9%) areas were present in LVAs, while they were at the border of the LVA and normal voltage areas in the remaining 6/23 (26.1%). Global activation histograms facilitated the identification of the critical isthmus in all. Tailor-made ablation at critical isthmuses successfully eliminated all ATs. However, one patient with AT related to functional linear block experienced recurrent AT related to dense scar, which progressed after the procedure. During a mean 14 ± 13 month follow-up after the last procedure, no patients experienced recurrent ATs without any complications. CONCLUSION: LASARTs consist of not only fixed conduction blocks but also functional conduction blocks. Ultrahigh resolution mapping is highly useful to decide the optimal tailor-made ablation strategy based on the mechanisms.
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Miyazaki et al. (2021) studied this question.
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