Related Experiment Video
Updated: Jun 9, 2026

Chronic Ovine Model of Right Ventricular Failure and Functional Tricuspid Regurgitation
Published on: March 17, 2023
Factors associated with atrial functional tricuspid regurgitation severity: a comprehensive three-dimensional
Kyu Kim1, Seo-Yeon Gwak1, Hyun-Jung Lee1
1Division of Cardiology, Severance Cardiovascular Hospital, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.
Aims:
Geometric alterations in the tricuspid annulus (TA) are common in atrial functional tricuspid regurgitation (A-FTR), and may reflect structural and dynamic changes that contribute to disease severity.
Methods And Results:
Comprehensive two-dimensional and 3D echocardiographic analyses were performed in 216 patients with A-FTR. Geometric parameters included indexed TA area, sphericity index, and tenting volume. Dynamic parameters included TA area fraction, TA excursion, and unfavourable TA dynamics. A-FTR groups. Indexed TA area and tenting volume increased significantly with A-FTR severity (all P < 0.001). Severe A-FTR showed a higher prevalence of unfavourable TA dynamics (55.8%, P = 0.013) compared to mild (33.3%) and moderate (32.1%) groups. No significant differences were observed in TA area fraction and excursion across groups. In multivariable analysis, indexed TA area (aOR: 1.216, 95% CI: 1.166-1.267, P < 0.001), tenting volume (aOR: 1.150, 95% CI: 1.099-1.204, P < 0.001), and unfavourable TA dynamics (aOR: 1.309, 95% CI: 1.089-1.572, P = 0.005) were independently associated with A-FTR severity. TA geometry correlated with both RA (β=0.841, P < 0.001) and RV (β=0.748, P < 0.001) volumes, while unfavourable dynamics were associated only with RV volume (β=0.166, P = 0.027).
Conclusion:
3D remodelling and unfavourable TA dynamics independently correlated with A-FTR severity. TA geometry was linked to RA volume, while dynamics reflected RV remodelling. These findings support a potential sequential mechanism, highlighting the value of comprehensive 3D assessment.
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