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Published on: November 1, 2018
Three-dimensional helical computed tomographic angiography in neonates and infants with complex congenital heart
1Department of Pediatrics and the Cardiovascular Research Institute, Kurume University School of Medicine, Japan.
Insights
Three-dimensional helical computed tomography (CT) angiography is a valuable tool for evaluating extracardiac anomalies in neonates with complex congenital heart disease (CHD). While it clearly visualizes external structures, it has limitations in visualizing internal cardiac anatomy.
Area of Science:
- Medical Imaging
- Pediatric Cardiology
- Radiology
Background:
- Accurate morphologic evaluation is critical for managing complex congenital heart disease (CHD).
- Three-dimensional (3D) helical computed tomography (CT) angiography is established for adult vascular assessment.
- Its utility in neonates with complex CHD requires definition.
Purpose of the Study:
- To determine the quality and limitations of 3D helical CT angiography in neonates and infants with complex CHD.
- To assess the clinical utility of this imaging technique in this population.
Main Methods:
- 17 neonates and infants with complex CHD underwent 3D helical CT angiography.
- Shaded-surface display algorithm was used for 3D reconstruction.
- Oral sedation was minimally required.
Main Results:
- 3D helical CT angiography clearly depicted extracardiac structures like great arteries, pulmonary arteries, venous connections, ductus arteriosus, and shunts.
- Spatial relationships of extracardiac anomalies were easily recognized.
- Intracardiac structures were poorly visualized due to respiratory motion artifacts.
Conclusions:
- 3D helical CT angiography is a valuable supplementary diagnostic tool for complex CHD in neonates and infants.
- It may serve as an alternative to conventional angiography or other noninvasive methods for evaluating extracardiac anomalies.
Background:
For the clinical management of patients with complex congenital heart disease (CHD), accurate evaluation of their morphologic conditions is critical. Three-dimensional (3D) helical computed tomography (CT) angiography has been used to assess the vascular system in adult patients; the indication for complex CHD, especially in the neonatal period, has not yet been defined. Therefore the purposes of our study were to determine the quality and limitations of current 3D helical CT angiography for neonates and infants with complex CHD and to assess the clinical utility of this technique.
Methods And Results:
3D helical CT angiography was performed in 17 patients with various types of complex CHD. Their median age was 41 days (range 3 days to 9 months), and mean body weight was 3.6 kg (range 2.2 to 8.5 kg). All 3D images were produced with the 3D reconstruction algorithm of shaded-surface display. Oral sedation was required in only 4 infants during the procedure. 3D helical CT angiography clearly demonstrated the shape and spatial relation of great arteries, proximal branch pulmonary arteries, anomalous pulmonary venous connections, the patent ductus arteriosus, and a shunt. The 3D information of extracardiac morphologic characteristics and 3D anatomic relation of each extracardiac structure were easily recognized by this imaging process. However, intracardiac structure could not be visualized because of blurred and/or unclear edges of the ventricular wall caused by respiratory movement.
Conclusions:
3D helical CT angiography represents an important additional diagnostic tool and may become an alternative method to angiography or other noninvasive techniques used in the evaluation of extracardiac anomalies in neonates and infants with complex CHD.
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