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Published on: June 15, 2020
Atrial function in the Fontan circulation: comparison with invasively assessed systemic ventricular filling pressure
Gruschen Veldtman1,2, Mathias Possner3, Dania Mohty4,5,6
1King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia. Gruschen@me.com.
Insights
Fontan circulation patients show depressed global atrial function, uncoupled from segmental function. Atrial mechanics are not linked to systemic ventricular filling pressures but global atrial reservoir strain correlates with pulmonary vascular resistance.
Area of Science:
- Cardiology
- Pediatric Cardiology
- Congenital Heart Disease
Background:
- Abnormal atrial mechanics are linked to elevated left heart filling pressures in biventricular circulations.
- The relationship between atrial mechanics and hemodynamics in Fontan circulation is not well understood.
Purpose of the Study:
- To investigate the association between atrial mechanics and invasively measured hemodynamic parameters in patients with Fontan circulation.
- To compare atrial mechanics in Fontan patients with healthy controls.
Main Methods:
- Echocardiographic and invasive hemodynamic studies were performed in 39 Fontan patients and 40 healthy controls.
- Two-dimensional speckle-tracking was used to measure atrial and ventricular strain.
- Statistical analysis explored correlations between strain measures and hemodynamic parameters.
Main Results:
- Fontan patients exhibited significantly lower atrial strain measures compared to controls.
- No significant association was found between atrial strain and systemic ventricular filling pressures (SVFP).
- Global atrial reservoir strain positively correlated with pulmonary vascular resistance, and global atrial conduit strain correlated with AV valve inflow E/A ratio.
Conclusions:
- Global atrial function is significantly depressed and uncoupled from segmental function in Fontan patients.
- Atrial mechanics in Fontan patients are not significantly associated with SVFP.
- Global atrial reservoir function appears to be related to pulmonary vascular resistance in Fontan circulation.
Abstract:
Abnormal atrial mechanics in biventricular circulations have been associated with elevated left heart filling pressures. Similar associations in the Fontan circulation are unknown. The aim of this study was to examine the relationship between atrial mechanics and invasively assessed hemodynamic parameters late after the Fontan operation. Thirty-nine Fontan patients with echocardiographic and invasive hemodynamic studies done within 48 h were included and were compared to 40 age-matched healthy controls. Atrial and ventricular strain measurements were measured offline using 2-dimensional speckle-tracking. Mean age was 10.2 ± 6.7 years and 24 (62%) were male. Atrial strain measures were lower in Fontan patients compared to healthy controls. There was no significant association between atrial strain measurements and Fontan systemic ventricular filling pressures (SVFP) as indicated by pulmonary artery occlusion pressures, direct left atrial pressure or systemic ventricular end-diastolic pressure. Global atrial strain was not correlated with segmental atrial strain in the pulmonary venous atrium. Global atrial reservoir strain was positively correlated with pulmonary vascular resistance (r = 0.508, p = 0.045). Global atrial conduit strain was positively correlated with E/A ratio of the AV valve inflow (r = 0.555, p = 0.002). Atrial and ventricular strain measurements were not significantly correlated. In patients with a Fontan, global atrial function is significantly depressed, and is uncoupled from segmental left lateral atrial function. Global as well as segmental atrial mechanics are not significantly associated with SVFPs in Fontan patients. Instead, global atrial reservoir function appears to parallel pulmonary vascular resistance.
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