OBJECTIVES The study evaluated the safety and efficacy of stent reconstruction of stenotic/occluded iliofemoral veins (IFV) and inferior vena cava (IVC).BACKGROUND Patients with congenital heart defects and stenotic or occluded IFV/IVC may encounter femoral venous access problems during future cardiac surgeries or catheterizations.METHODS Twenty-four patients (median age 4.9 years) underwent implantation of 85 stents in 22 IFV and 6 IVC. Fifteen vessels were severely stenotic and 13 were completely occluded. Although guide wires were easily passed across the stenotic vessels, occluded vessels required puncture through the thrombosed sites using a stiff wire or transseptal needle. Once traversed, the occluded site was dilated serially prior to stent implantation.RESULTS Following stent placement, the mean vessel diameter increased from 0.9 +/- 1.6 to 7.4 +/- 2.6 mm (p < 0.05). Twenty-one of 28 vessels had long segment stenosis/occlusion requiring two to seven overlapping stents. Repeat catheterizations were performed in seven patients (9 stented vessels) at mean follow-up of 1.6 years. Seven vessels remained patent with mean diameter of 6.4 +/- 2.0 mm. Two vessels were occluded, but they were easily recanalized and redilated. Echocardiographic follow-up in two patients with IVC stents demonstrated wide patency. In four additional patients, a stented vessel was utilized for vascular access during subsequent cardiac surgery (n = 3) and endomyocardial biopsy (n = 1). Therefore, 13 of 15 stented vessels (87%) remained patent at follow-up thus far.CONCLUSIONS Stenotic/obstructed IFV and IVC may be reconstructed using stents to re-establish venous access to the heart for future cardiac catheterization and/or surgeries. (J Am Cell Cardiol 2001;37:251-7) (C) 2001 by the American College of Cardiology.
Limited information is available that describes the practical conversion of a pediatric echocardiography laboratory from videotape to a primarily digital format. To help pediatric echocardiographers begin to make the analog-to-digital transition, we report our pediatric digital acquisition protocol and the acquisition and storage parameters of 1000 unselected, consecutive digitally acquired studies of pediatric patients with known or suspected congenital or acquired heart disease. With the use of our acquisition protocol, a complete normal study requires 46 moving clips and 12 still-frame images. Five hundred consecutive patient studies acquired with "high" JPEG (Joint Photographers Experts Group) compression (group 1) were compared with the next 500 examinations acquired using "medium" JPEG compression (group 2) for number of moving clips, still images, and megabytes of storage space. No intergroup difference was found in the number of moving clips or still images. When JPEG compression was decreased from high to medium, the average clip storage requirement per patient increased, and the number of patients stored per 230-MB magneto optical disk decreased significantly. Non-ECG-triggered timed single-plane clips and still images required significantly more storage space than ECG-triggered single-beat clips and still images. The frequency of multiplane sweeps was.03% and was independent of diagnosis. With the use of high JPEG compression, the digital storage cost per patient was $1.90, which was 6.0 times greater than that for simultaneously recorded 120-minute VHS videotape. Many features of the digital paradigm, including decreased MOD storage space, enhanced serial study comparisons, random image access, and improved image quality, mitigate this cost differential.