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Diastolic Function and Left Atrial Strain in Young Patients with History of Aortic Coarctation Repair
Mariana Lemos1, João Rato2, Miguel Fogaça da Mata1
1Pediatric Cardiology Department, Hospital Santa Cruz-Centro Hospitalar Lisboa Ocidental, Av. Prof. Dr. Reinaldo dos Santos, 2790-134, Carnaxide, Portugal.
Insights
Young patients with aortic coarctation (AoCo) show lasting diastolic dysfunction and atrial strain changes, even after effective correction. Their physiology resembles recoarctation more than healthy individuals, highlighting the need for proactive management.
Area of Science:
- Cardiology
- Echocardiography
- Pediatric Cardiology
Background:
- Aortic coarctation (AoCo) can cause long-term heart dysfunction.
- New echocardiographic parameters like atrial strain are understudied in AoCo patients.
Purpose of the Study:
- To describe echocardiographic diastolic function parameters in AoCo patients.
- To associate these parameters with AoCo severity measures.
Main Methods:
- Evaluated 53 AoCo patients (aged 12-40) and 31 controls.
- Defined effectively corrected AoCo (cAoCo) and recoarctation (rAoCo) based on Doppler gradient.
- Assessed E/E', atrial reservoir strain (Ares), and atrial conduit strain (Acd).
- Used regression analysis to correlate parameters with SBP, LV mass, Dgrad, and Aoratio.
Main Results:
- AoCo patients (both cAoCo and rAoCo) had higher E/E' and lower Ares and Acd than controls.
- Acd was higher in cAoCo than rAoCo.
- Higher Ares correlated with higher Aoratio; lower Acd correlated with higher Dgrad.
Conclusions:
- Effectively corrected AoCo patients exhibit persistent diastolic dysfunction and altered atrial strain.
- These changes are influenced by anatomical sequelae and patient physiology resembles rAoCo.
- Supports intensified prevention and treatment of arterial dysfunction and left ventricular afterload in AoCo.
Abstract:
Aortic coarctation (AoCo) leads to long-term sequelae that may impair heart function. Data regarding new echocardiographic function parameters such as atrial strain, in affected patients, are scarce. This study aims to describe these parameters in AoCo patients and define their association with severity measures. 53 AoCo patients and 31 healthy controls, aged 12-40 years, were evaluated. Effectively corrected AoCo (cAoCo) was defined as aortic trans-isthmic corrected Doppler gradient (Dgrad) ≤ 20 mmHg (n = 36), and recoarctation (rAoCo) as Dgrad > 20 mmHg (n = 17). Dependent variables were: E/E'; atrial reservoir strain (Ares); and atrial conduit strain (Acd). T-tests/Mann-Whitney U tests were used to compare these among groups. Multivariable regression was used to test correlation with systolic blood pressure (SBP), indexed LV mass (ILVM), Dgrad, and the ratio between the narrowest diameter of aortic arch and aorta at diaphragm level (Aoratio). In cAoCo and rAoCo patients, E/E' was higher (p < 0.001), Ares, and Acd were lower (p < 0.001 for both) comparing with controls. Acd was higher in cAoCo than rAoCo (p = 0.045). Higher Ares was associated with higher Aoratio (p = 0.002), and lower Acd with higher Dgrad (0.014). EF and GLS were not different among groups. Young patients with effectively corrected aortic coarctation have persistent changes in diastolic function parameters (E/E' and atrial strain), and these are affected by anatomical sequelae. These patients' physiology is closer to patients with recoarctation, than to healthy individuals. This provides rationale for a stronger prevention, and treatment, of arterial dysfunction and high left ventricular afterload in these patients.
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