Aortic arch anomalies usually require surgical intervention preceded by precise anatomic definition. We studied 20 patients to evaluate the feasibility and accuracy of using intravascular ultrasound catheters from a transesophageal approach with 3-dimensional image reconstruction for the diagnosis of aortic arch anomalies in infants and children. All patients had transthoracic echocardiograms and/or angiograms or magnetic resonance imaging. A 12.5-MHz intravascular ultrasound catheter was positioned in the esophagus and withdrawn by using an electrocardiogram and a respiratory gated pullback device to acquire the mediastinal images. All patients with arch anomalies underwent surgical repair. Reconstructed images were analyzed in the "anyplane" mode and with surface rendering. Intravascular ultrasound 3-dimensional imaging was successfully accomplished without complications. Anatomy was correctly identified in all patients by both blinded and unblinded observers, thus confirming the sensitivity and accuracy of the technique. We foresee this new technique to be useful as an adjunctive imaging modality applicable at the bedside or in the cardiac imaging laboratory.
Supravalvular aortic stenosis is characterized by obstruction of the left ventricular outflow tract distal to the aortic valve, and may result in diminished coronary artery blood flow. This report describes the cases of 2 patients in whom obstruction to left coronary artery flow was caused by obliteration of the coronary ostium itself. This mechanism differs from the more commonly recognized cause--valve leaflet adhesion to the obstructing ridge of aortic tissue. The coronary artery obstruction found in these 2 patients required direct enlargement of the left coronary ostium in both. This mechanism of impaired coronary artery flow deserves emphasis, as traditional methods of extended patch aortoplasty may fail to relieve the coronary ostial narrowing.