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Updated: Mar 13, 2026

Estimating Bilateral Atrial Function by Cardiovascular Magnetic Resonance Feature Tracking in Patients with Paroxysmal Atrial Fibrillation
Published on: July 20, 2022
Multimodality Cardiac Imaging for the Assessment of Left Atrial Function and the Association With Atrial Arrhythmias
Flemming Javier Olsen1, Litten Bertelsen2, Martina Chantal de Knegt2
1From the Department of Cardiology, Herlev & Gentofte Hospital (F.J.O., J.S.J., T.B.-S.), Department of Cardiology, Rigshospitalet (L.B., M.C.d.K., N.V., J.H.S.), Department of Cardiology, Department of Clinical Physiology, Nuclear Medicine & PET, Cluster for Molecular Imaging, Rigshospitalet (T.E.C.), and Institute of Clinical Medicine, Faculty of Health and Medical Sciences (J.H.S., J.S.J.), University of Copenhagen, Denmark; and Department of Radiology, Cardio-Vascular Imaging Division (T.E.C.) and Department of Medicine, Cardiovascular Medicine Division (T.B.-S.), Brigham and Women's Hospital, Harvard Medical School, Boston, MA. flemming.j.olsen@gmail.com.
Insights
Advanced cardiac imaging reveals left atrial (LA) functional measures, superior to LA volume, can predict atrial fibrillation risk. Current guidelines lag due to technical standardization issues in LA deformation analysis.
Area of Science:
- Cardiology
- Medical Imaging
- Biomedical Engineering
Background:
- Left atrial (LA) structure and function are crucial in cardiac health.
- Current echocardiography primarily uses maximal LA volume for diastolic function assessment.
- LA functional measures show promise beyond structural assessment, especially for predicting atrial fibrillation.
Purpose of the Study:
- To review the clinical value of advanced LA functional measures.
- To explore the relationship between LA fibrosis, function, and atrial fibrillation recurrence.
- To address technical challenges and future prospects of LA deformation analysis.
Main Methods:
- Review of cardiac magnetic resonance imaging (CMR) and echocardiography studies.
- Analysis of speckle tracking echocardiography and CMR tissue tracking techniques.
- Evaluation of LA fibrosis quantification and its correlation with LA function.
Main Results:
- LA functional measures correlate with clinical outcomes and atrial fibrillation risk.
- LA fibrosis is linked to atrial fibrillation recurrence post-ablation.
- An inverse relationship exists between LA reservoir function and LA fibrosis degree.
Conclusions:
- Advanced LA functional imaging offers superior predictive value over maximal LA volume.
- Standardization of LA deformation analysis techniques is needed for clinical guideline adoption.
- Multimodality imaging holds potential for improved LA assessment and patient management.
Abstract:
Several cardiac imaging modalities are able to visualize the left atrium (LA) and, therefore, allow for quantification of both structural and functional properties of this cardiac chamber. In echocardiography, only the maximal LA volume is included in the assessment of diastolic function at the current moment. Numerous studies, however, have shown that functional measures may be superior to the maximal LA volume in several aspects and to possess clinical value even in the absence of structural abnormalities. Such functional measures could prove particularly useful in the setting of predicting atrial fibrillation, which will be a point of focus in this review. Pivotal cardiac magnetic resonance imaging studies have revealed high correlation between LA fibrosis and risk of atrial fibrillation recurrence after catheter ablation, and subsequent multimodality imaging studies have uncovered an inverse relationship between LA reservoir function and degree of LA fibrosis. This has sparked an increased interest into the application of advanced imaging modalities, including both speckle tracking echocardiography and tissue tracking by cardiac magnetic resonance imaging. Even though increasing evidence has supported the use of functional measures and proven its superiority to the maximal LA volume, they have still not been adopted in clinical guidelines. The reason for this discrepancy may rely on the fact that there is little to no agreement on how to technically perform deformation analysis of the LA. Such technical considerations, limitations, and alternate imaging prospects will be addressed in this review.
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