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February 8, 2026European Heart Journal0 citations

Evaluation of atrial substrate using COHERENT mapping in atrial fibrillation: correlation with clinical profiles and structural remodeling

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CKChisato KitamuraKMK MoritaYHY Hattori

Key Result

COHERENT-MAP detected that conduction delay correlates with persistent AF (p<0.01), congested flow with LA enlargement and diastolic dysfunction, and disrupted flow with stroke history.

Key Points

  • Investigate the correlation between COHERENT-MAP abnormalities and clinical profiles in atrial fibrillation.
  • Acquired atrial potentials with COHERENT mapping using the CARTO system.
  • Measured at over 2,000 points in both atria with a multi-electrode mapping catheter.
  • Identified five propagation patterns in the atrial mapping data.
  • The conduction delay pattern was significantly more pronounced in persistent atrial fibrillation (p<0.01).
  • Congested flow pattern correlated with increased left atrial measurements (LAVI: p<0.01) and diastolic dysfunction (E/E': p<0.01).
  • Disrupted flow pattern associated with history of stroke and heart failure (p<0.01).
  • Multi-bachmann’s bundle pattern showed strong correlation with cardiogenic cerebral embolism risk factors.

Structured PICO

Do specific atrial propagation patterns identified by COHERENT mapping correlate with clinical profiles and structural remodeling in patients with atrial fibrillation?

P
Population
107 patients with atrial fibrillation who underwent catheter ablation therapy
I
Intervention
Atrial potential mapping using the COHERENT mapping module on the CARTO system with a 1 mm multi-electrode mapping catheter (PENTARAY-NAV) measuring over 2,000 points
O
Outcome
Relationship between propagation patterns observed in COHERENT-MAP and clinical background/structural remodelingsurrogate

Specific atrial propagation patterns identified by COHERENT mapping correlate with clinical severity markers such as stroke history and heart failure, potentially aiding in personalized management of atrial fibrillation.

Abstract

Abstract Introduction Atrial fibrillation is the most commonly encountered arrhythmia in a clinical setting. At its core, the mechanism of atrial fibrillation is associated with two primary substrates: the triggering substrate and the sustaining substrate. Additionally, when fibrosis occurs in the myocardium, it heightens the risk of evolving into chronic atrial fibrillation. These processes are known as "electrical remodeling" and "structural remodeling." Moreover, these myocardial remodeling changes influence the propagation patterns of myocardial electrical conduction. The COHERENT mapping module on CARTO system (COHERENT-MAP) offers detailed visualization of the direction and speed of these electrical propagation patterns, facilitating an accurate assessment of myocardial pathology. The purpose of this study is to investigate the relationship between abnormalities observed in COHERENT-MAP and the clinical background. Furthermore, the study aims to identify guidelines used in determining the ablation treatment strategies and decision-making for postoperative anticoagulant management based on these findings. Methods We acquired atrial potentials using the Coherent mapping module on the CARTO system and visualized the flow patterns. Atrial potentials were measured at over 2,000 points in both atria using a 1 mm multi-electrode mapping catheter (PENTARAY-NAV). We identified five propagation patterns: Normal conduction pattern, Conduction delay pattern, Congested flow pattern, Disrupted flow pattern, and Multi-bachmann’s bundle pattern. Results We enrolled 107 patients with atrial fibrillation who underwent catheter ablation therapy. The conduction delay pattern was more pronounced in patients with persistent atrial fibrillation than in those with paroxysmal atrial fibrillation (p0.01). Additionally, significant differences were observed in left atrial measurements (p=0.01). The congested flow pattern correlated with increased left atrial measurements (LAVI: p0.01), diastolic dysfunction (E/E': p0.01), and elevated NT-proBNP levels (p=0.03). Notably, the disrupted flow pattern was associated with a history of stroke (p0.01), heart failure, and cardiomyopathy (p=0.04), among other metrics. The multi-bachmann’s bundle pattern strongly correlated with risk factors for cardiogenic cerebral embolism. Conclusion The COHERENT-MAP serves as a crucial tool for evaluating myocardial changes. Notably, bachmann's bundle split pattern is linked to cerebral embolism, underscoring the ongoing need for anticoagulants. Additionally, the disrupted flow pattern is associated with heart failure and cardiomyopathy, emphasizing the importance of pharmacological interventions in cases of atrial cardiomyopathy.Coherent pattern

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Cite This Study

Kitamura et al. (2025) studied this question. COHERENT-MAP detected that conduction delay correlates with persistent AF (p<0.01), congested flow with LA enlargement and diastolic dysfunction, and disrupted flow with stroke history.

synapsesocial.com/papers/6988290a0fc35cd7a8849160https://doi.org/10.1093/eurheartj/ehaf784.499
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Also Consider

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

  1. 1Mapping Atrial Fibrillation: 2015 Update.2015 · 8 citations
  2. 2Targeting the Substrate in Ablation of Persistent Atrial Fibrillation: Recent Lessons and Future Directions2018 · 13 citations
  3. 3Organized patterns of excitation during persistent atrial fibrillation in humans relate to tissue structure and activation rate2024
  4. 4The individual relationship between atrial fibrillation sources from CARTOFINDER mapping and atrial cardiomyopathy2023 · 4 citations
  5. 5Conduction velocity-based functional substrate mapping during atrial fibrillation (AF) enhances identification of AF drivers compared to mapping during sinus rhythm2024 · 1 citations