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Published on: February 3, 2014
Acute Changes in Right Ventricular Function in Pediatric Patients with Pulmonary Valve Stenosis Undergoing
Domenico Sirico1, Giulia Spigariol1, Heba Talat Mahmoud1
1Pediatric and Congenital Cardiology Unit, Department for Women's and Children's Health, University Hospital of Padova, 35128 Padua, Italy.
Insights
Percutaneous balloon pulmonary valvuloplasty effectively reduces pressure in severe pulmonary valve stenosis. While global right ventricular function improves immediately, longitudinal function remains impaired 24 hours post-procedure.
Area of Science:
- Cardiology
- Pediatric Cardiology
- Echocardiography
Background:
- Pulmonary valve stenosis significantly impacts right ventricular (RV) function.
- Percutaneous balloon valvuloplasty (BPV) is the primary treatment for severe pulmonary valve stenosis.
- Immediate changes in RV function post-BPV in pediatric patients are not well understood.
Purpose of the Study:
- To evaluate RV mechanics in pediatric patients following BPV for valvar pulmonary stenosis.
- To assess early changes in RV function using echocardiography and speckle-tracking.
Main Methods:
- Forty-three pediatric patients with severe pulmonary valve stenosis underwent BPV.
- Transthoracic echocardiography (TTE) and speckle-tracking echocardiography (STE) were performed pre- and post-procedure.
- Invasive hemodynamic parameters were recorded before and after BPV.
Main Results:
- BPV significantly reduced transpulmonary gradients and RV systolic pressure.
- Fractional area change (FAC) of the RV improved significantly post-procedure.
- Longitudinal systolic function parameters (TAPSE, RVFWLS) showed no significant improvement; however, regional analysis revealed improved apical segment deformation.
Conclusions:
- BPV is an effective and safe procedure for severe pulmonary valve stenosis.
- Immediate global RV systolic function improves post-BPV, but longitudinal function may require longer recovery.
- Echocardiographic assessment reveals nuanced changes in RV mechanics after BPV.
Introduction:
Pulmonary valve stenosis determines multiple effects on the right ventricular dimension and function. Percutaneous balloon valvuloplasty is the treatment of choice in severe pulmonary valve stenosis in patients of all ages. However, little is known regarding right ventricular function immediate changes after percutaneous balloon dilation. Pediatric patients with isolated pulmonary valve stenosis represent a pure clinical model of chronic RV pressure overload not affected by other confounders or comorbidities.
Aim Of The Study:
This study seeks to explore right ventricle (RV) mechanics in pediatric patients early after percutaneous balloon pulmonary valvuloplasty (BPV) for valvar pulmonary stenosis (PS).
Materials And Methods:
Forty-three pediatric patients (19 males), mean age 3.2 ± 4.9 years old, with severe pulmonary valve stenosis and indication for percutaneous balloon valvuloplasty were recruited. All patients underwent standard transthoracic echocardiography (TTE), and speckle-tracking echocardiography (STE) with an analysis of right ventricle free-wall longitudinal strain (RVFWLS) one day before and one day after the procedure. For each patient, we collected invasive parameters during the interventional procedure before and after BPV.
Results:
After the procedure, there was an immediate significant reduction in both peak-to-peak transpulmonary gradient (peak-to-peak PG) and ratio between the right ventricle and aortic systolic pressure (RV/AoP) with a drop of ∆29.3 ± 14.67 mmHg and ∆0.43 ± 0.03, respectively. Post-procedural echocardiography showed peak and mean transvalvar pressure gradient drop (∆50 ± 32.23 and ∆31 ± 17.97, respectively). The degree of pulmonary valve regurgitation was mild in 8% of patients before the procedure, affecting 29% of our patients post-BPV (p = 0.007). The analysis of right ventricular mechanics showed a significant improvement of fractional area change (FAC) immediately after BPV (40.11% vs. 44.42%, p = 0.01). On the other hand, right ventricular longitudinal systolic function parameters, TAPSE and global RVFWLS, did not improve significantly after intervention. The segmental analysis of the RVFWLS showed a significant regional increase in the myocardial deformation of the apical segments.
Conclusions:
Percutaneous BPV represents an efficient and safe procedure to relieve severe pulmonary valve stenosis. The analysis of the right ventricular function on echocardiography demonstrated an immediate global systolic function improvement, while longitudinal systolic function was persistently impaired 24 h after intervention, possibly due to the necessity of a longer recovery time.
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