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Published on: May 28, 2010
Doppler echocardiographic evaluation of tilting-disc prosthetic heart valves in children
G R Martin1, F M Galioto, F M Midgley
1Department of Cardiology, Children's Hospital National Medical Center, Washington, DC 20010.
Insights
Doppler ultrasound accurately assesses pediatric prosthetic heart valve function, showing good correlation with actual valve area despite common mild regurgitation. This method aids in monitoring these critical implants in children.
Area of Science:
- Pediatric cardiology
- Cardiovascular imaging
- Prosthetic heart valves
Background:
- Tilting-disc prosthetic heart valves are used in pediatric cardiac surgery.
- Assessing their function non-invasively is crucial for patient management.
- Doppler echocardiography is a key tool for evaluating valve hemodynamics.
Purpose of the Study:
- To determine the Doppler characteristics of tilting-disc prosthetic heart valves in pediatric patients.
- To assess the accuracy of Doppler-derived prosthetic valve area calculations.
- To identify the prevalence of residual valvular abnormalities post-implantation.
Main Methods:
- Studied 22 children with mitral and 10 with aortic prostheses using pulsed wave, continuous wave, and color Doppler.
- Measured peak and mean velocities and gradients.
- Calculated prosthetic valve area using pressure half-time and modified Gorlin methods.
Main Results:
- Mild prosthetic valve regurgitation was observed in a significant proportion of both mitral (8/22) and aortic (7/10) prostheses.
- Doppler-derived prosthetic mitral and aortic valve areas showed good correlation with known valve areas (r=0.89 to 0.95).
- A large standard error of the estimate was noted for Doppler-derived valve area calculations.
Conclusions:
- Residual valvular abnormalities are common after prosthetic valve insertion in children.
- Doppler echocardiography provides reliable estimates of prosthetic valve area in pediatric patients.
- While Doppler estimates correlate well, their inherent variability necessitates careful interpretation in clinical practice.
Abstract:
To determine the Doppler characteristics of tilting-disc prosthetic heart valves in children, 22 children with mitral prostheses were studied 8 +/- 2 months after surgery, and 10 children with aortic prostheses were studied 37 +/- 26 months after surgery. All valves were thought to be functioning normally by clinical examination. Valve competence was interrogated and peak and mean velocities were measured by standard pulsed wave, continuous wave and color Doppler techniques. Prosthetic valve area was calculated and compared to the known valve area. Mild prosthetic valve regurgitation was present in 8 of 22 mitral and 7 of 10 aortic prostheses. For mitral prostheses, peak velocity was 192 +/- 41 cm/s, mean velocity was 118 +/- 37 cm/s and mean gradient was 7 +/- 4 mm Hg. For aortic prostheses, peak velocity was 287 +/- 88 cm/s, mean velocity was 197 +/- 59 cm/s, peak gradient was 36 +/- 21 mm Hg and mean gradient was 19 +/- 11 mm Hg. Prosthetic mitral valve area, calculated by the pressure half-time and modified Gorlin methods, correlated well with the known valve area (r = 0.89, standard error of the estimate = 0.29 and r = 0.95, standard error of the estimate = 0.21, respectively). Prosthetic aortic valve area, calculated by the modified Gorlin method, correlated well with the known valve area (r = 0.89, standard error of the estimate = 0.18). Residual valvular abnormalities are common after prosthetic valve insertion in children. Doppler estimates of prosthetic valve area correlate well with the known valve area but have a large standard error of the estimate.
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