Background: Although there are many studies on percutaneous nephrostomy in urinary obstruction management in pediatric patients, there is a limited number of studies on percutaneous antegrade ureteral stenting (PAUS) on this issue.
Purpose: To evaluate the results of fluoroscopy-guided percutaneous antegrade approach for ureteral stent placement through the nephrostomy route in children.
Material And Methods: Between October 2005 and June 2019, the medical records of children who underwent PAUS through the nephrostomy route were reviewed retrospectively. Demographic data of the patients, technical and clinical success rates, technical details, and complications of the procedure were recorded. Patients were divided and evaluated into groups according to etiology. Categorical data were analyzed by using the Pearson chi-square test.
Results: In total, 31 patients (19 boys, 12 girls; age range = 2 months-18 years; mean age = 7.4 ± 6.01 years) and 42 procedures were included in the study. The most common underlying diseases were ureteropelvic junction obstruction (16 stents, 38.1%) and vesicoureteral reflux (13 stents, 31%). The technical and clinical success rates were 97.6% and 90%, respectively. Clinical failure (10%) was not related to gender, underlying diseases, and stent size ( > 0.05). Mean stent dwelling time was 96.43 ± 58.1 days. Complications were urinary tract infection (two procedures), stent migration (two procedures), early occlusion (one procedure), and contrast material leak after balloon dilation (one procedure). The complication rate was 14.6%. No procedure-related death was observed.
Conclusion: PAUS through the nephrostomy route in children is an effective and reliable method when surgical treatment is not feasible.
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http://dx.doi.org/10.1177/02841851211030782 | DOI Listing |
Tunis Med
January 2025
Cardiology department, Habib Thameur teaching hospital, Tunis, Tunisia. Faculty of medicine of Tunis, University of Tunis El Manar.
Introduction: In recent years, advancements in chronic total occlusion (CTO) percutaneous coronary intervention (PCI) have been notable, improving procedural techniques, imaging, and management of complications.
Aim: We sought to assess the performance and the practice of a high-volume Tunisian PCI center in treating patients with a CTO.
Methods: We retrospectively evaluated data from consecutive CTO patients who underwent percutaneous revascularization from October 2019 to January 2024 at the cardiology department of Habib Thameur Teaching Hospital, Tunisia.
J Invasive Cardiol
January 2025
Minneapolis Heart Institute and Minneapolis Heart Institute Foundation, Abbott Northwestern Hospital, Minneapolis, Minnesota. Email:
Background: The use of the Ostial Flash balloon (Ostial Corporation) has received limited study in aorto-ostial chronic total occlusion (CTO) percutaneous coronary artery intervention (PCI).
Methods: The authors evaluated the outcomes of Ostial Flash balloon use in a large CTO-PCI registry (PROGRESS-CTO, NCT02061436).
Results: The Ostial Flash balloon was used in 54 of 907 aorto-ostial CTO PCIs in 905 patients (6.
J Soc Cardiovasc Angiogr Interv
December 2024
Department of Cardiology, HonorHealth/Scottsdale Shea Medical Center, Scottsdale, Arizona.
Chronic total occlusion (CTO) percutaneous coronary intervention (PCI) is high risk compared to non-CTO PCI. Iatrogenic coronary artery hematoma formation is a common occurrence during CTO PCI, impairing true lumen visualization. We describe the use of a continuous mechanical suction (CMS) device in 2 applications in which it was used for successful subintimal hematoma decompression and distal vessel re-entry.
View Article and Find Full Text PDFCardiovasc Diagn Ther
December 2024
Department of Cardiovascular, University Hospital Basel, Basel, Switzerland.
CVIR Endovasc
January 2025
Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, NY, 10065, USA.
Background: Hepatic artery infusion pump (HAIP) chemotherapy is a locoregional treatment for intrahepatic malignancies. HAIPs are surgically implanted, and the catheter tip is typically inserted into a ligated gastroduodenal artery stump. Potential complications at the catheter insertion site include dehiscence, pseudoaneurysm or extravasation, and adjacent hepatic arterial stenosis and thrombosis.
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