Introduction: The purpose of this study was to report our centre's experience using selective angioembolisation in the treatment of iatrogenic renal artery pseudoaneurysms (RAP) following minimally invasive urological procedures.
Methods: Our retrospective analysis included four consecutive patients treated with angioembolisation for iatrogenic RAP between October 2016 and October 2021. Data on demographics, minimally invasive urological intervention, clinical features, imaging findings, embolization procedure and perioperative details were collected. Rates of technical and clinical success, defined as 1. total occlusion of the extravasation site on completion digital subtraction angiography (DSA), and 2. resolution of symptoms, signs, and serum hemoglobin (Hb) derangements secondary to RAP, were analysed. Renal function, measured by serum creatinine (Cr) and estimated glomerular filtration rate (eGFR), was recorded prior to and post - angioembolisation procedure and compared.
Results: Mean time between urological intervention and angioembolisation was 9 days (range, 2-17 days). Rates of technical and clinical success were 100% and 100% respectively. No additional angioembolisation procedures were required, and there were no peri or post-operative complications identified during mean follow-up of 662 days (range, 30-1845 days). Mean serum Cr prior to and post angioembolisation was 83 mmol/L and 79.5 mmol/L. Mean eGFR prior to and post angioembolisation was 73.8 and 77.8 mL/min/1.73 m2. In all patients, no significant difference was observed in serum Cr and eGFR prior to and post angioembolisation.
Conclusion: Iatrogenic renal artery pseudoaneurysms can occur following a range of minimally invasive urological procedures. This retrospective review highlights the utility of angioembolisation as a safe and effective treatment with high clinical and technical success rates. Further studies involving larger populations are required to validate its broader application.
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http://dx.doi.org/10.1177/15385744221108041 | DOI Listing |
Surg Endosc
January 2025
Department of Gastroenterology, The First Affiliated Hospital of Sun Yat-Sen University, Guangdong, China.
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January 2025
Department of Research and Innovation, Medway NHS Foundation Trust, Gillingham ME7 5NY, United Kingdom; Faculty of Medicine, Health and Social Care, Canterbury Christ Church University, United Kingdom.
This narrative review examines the transformative role of Artificial Intelligence (AI) and Machine Learning (ML) in organ retrieval and transplantation. AI and ML technologies enhance donor-recipient matching by integrating and analyzing complex datasets encompassing clinical, genetic, and demographic information, leading to more precise organ allocation and improved transplant success rates. In surgical planning, AI-driven image analysis automates organ segmentation, identifies critical anatomical features, and predicts surgical outcomes, aiding pre-operative planning and reducing intraoperative risks.
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New Cross Hospital, Royal Wolverhampton NHS Trust, Wolverhampton, United Kingdom.
Robotic-assisted thoracic surgery has become increasingly utilized in recent years. Complex lung cancer resection surgery can be performed using a robotic approach. It facilitates 3-dimentional visualization of structures, enhanced manipulation of tissues and precise movements.
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January 2025
Department of Urology, College of Medicine, The Catholic University of Korea, Seoul, Korea.
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Investig Clin Urol
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Department of Urology, Seoul National University Bundang Hospital, Seongnam, Korea.
The global increase in urolithiasis prevalence has led to a shift towards minimally invasive procedures, such as retrograde intrarenal surgery, supported by advancements in laser technologies for lithotripsy. Pulsed lasers, particularly the holmium YAG and the newer thulium fiber laser, have significantly transformed the management of upper urinary tract stones. However, the use of high-power lasers in these procedures introduces risks of heat-related injury.
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