Key result
Repaired tetralogy of Fallot patients had significantly lower tricuspid annular plane systolic excursion at peak exercise compared to healthy controls (1.6 vs 2.6 cm, p<0.001), indicating diminished right ventricular contractile reserve.
Why the study?
Does right ventricular contractile reserve differ during exercise in patients after tetralogy of Fallot repair compared to healthy controls?
Case-Control (n=39)
No
Does right ventricular contractile reserve differ during exercise in patients after tetralogy of Fallot repair compared to healthy controls?
Absolute Event Rate: 1.6% vs 2.6%
p-value: p=<0.001
Patients with repaired tetralogy of Fallot, particularly those with significant RV dilation, exhibit impaired right ventricular contractile reserve during exercise.
Reduced RV contractile reserve in dilated repaired TOF signals higher risk; leaves open its role in timing interventions.
BACKGROUND: The right ventricular (RV) contractile reserve is a measure of the dynamic function of the RV and is a sensitive indicator of volume load. This can be measured noninvasively using the tricuspid annular plane systolic excursion (TAPSE) during exercise. We studied the RV contractile reserve of patients after tetralogy of Fallot (TOF) repair with varying degree of RV dilation and pulmonary regurgitation (PR), and compared them to a control group. METHODS: Twenty-six patients who had undergone TOF repair (mean age 29 ± 10 years) were identified and stratified into three group based on the presence and severity of RV dilation and PR. We recruited 13 age- and sex-matched controls with normal cardiac anatomy for comparison. After obtaining a baseline echocardiogram in the resting state, patients underwent exercise testing on a treadmill utilizing Bruce protocol. At maximal voluntary ability during the exercise testing, the patient was immediately laid down on an echocardiography couch, and a peak exercise echocardiogram was obtained. RESULTS: TOF patients, regardless of RV size and PR severity, had significantly shorter exercise duration (685 vs 802 s, P = .02), lower TAPSE at rest (1.7 vs 2.3 cm, P < 0.001) and at peak exercise (1.6 ± 0.4 vs 2.6 ± 0.5 cm P < .001) when compared to the control group. Patients with RV dilation were more likely to have worse RV contractile reserve but increased TAPSE and tricuspid annular acceleration at rest when compared to patients without RV dilation. CONCLUSIONS: TOF patients with dilated RV and PR have worse RV function at rest and during exercise, compared to TOF subjects without RV dilation. Long-axis RV contractile reserve as assessed by TAPSE, was lower in TOF subjects versus controls, and was worse in those with significant RV dilation, suggesting a decline in contractile reserve with an increase in RV volume.
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Kingsley et al. (2018) conducted a case-control in Tetralogy of Fallot with pulmonary regurgitation (n=39). Repaired Tetralogy of Fallot vs. Healthy controls was evaluated on Tricuspid annular plane systolic excursion (TAPSE) at peak exercise (p=<0.001). Repaired tetralogy of Fallot patients had significantly lower tricuspid annular plane systolic excursion at peak exercise compared to healthy controls (1.6 vs 2.6 cm, p<0.001), indicating diminished right ventricular contractile reserve.
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