Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note.
AZ, K., AL, H., DFC, Z., M, S., P, H., MB, D., & AS, K. (2026). Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note.. Revista do Colegio Brasileiro de Cirurgioes. https://doi.org/10.1590/0100-6991e-2026003626-en
AZ K, AL H, DFC Z, M S, P H, MB D, et al. Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note.. Revista do Colegio Brasileiro de Cirurgioes. 2026; doi: 10.1590/0100-6991e-2026003626-en
AZ K, AL H, DFC Z, et al. Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note.[J]. Revista do Colegio Brasileiro de Cirurgioes. 2026. DOI: 10.1590/0100-6991e-2026003626-en.
@article{az2026,
author = {Kiani AZ and Hill AL and Zaraza DFC and Scherer M and Hampel P and Doyle MB and Khan AS},
title = {Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note.},
journal = {Revista do Colegio Brasileiro de Cirurgioes},
year = {2026},
doi = {10.1590/0100-6991e-2026003626-en},
note = {PMID: 42524921},
}
TY - JOUR AU - Kiani AZ AU - Hill AL AU - Zaraza DFC AU - Scherer M AU - Hampel P AU - Doyle MB AU - Khan AS TI - Robotic kidney autotransplantation with extracorporeal arterial and venous reconstruction for complex ureteral stricture: a technical note. T2 - Revista do Colegio Brasileiro de Cirurgioes PY - 2026 DO - 10.1590/0100-6991e-2026003626-en AN - PMID:42524921 ER -
INTRODUCTION: Kidney autotransplantation is an organ-preserving option for selected patients with complex ureteral or renovascular pathology not amenable to in situ reconstruction. Conventional open autotransplantation, however, is associated with substantial morbidity. Robotic kidney autotransplantation (RKAT) has emerged as a minimally invasive alternative, but detailed technical reports of complex cases requiring vascular reconstruction remain limited. TECHNICAL DESCRIPTION: We report the technique of RKAT in a 32-year-old woman with a radiation-induced high-grade ureteral stricture refractory to endoscopic management and not amenable to standard ureteral reconstruction. The procedure consisted of robotic nephrectomy, extracorporeal back-table reconstruction of dual renal arteries using a fish-mouth technique, extension of the short right renal vein with a bovine pericardial conduit, robotic implantation to the right external iliac vessels, and neocystoureterostomy. A detailed operative description is accompanied by a narrated surgical video. INITIAL EXPERIENCE: Console times for nephrectomy and implantation were 99 and 228 minutes, respectively. First warm ischemia time was 3 minutes, cold ischemia time was 3 hours, and second warm ischemia time was 36 minutes. The postoperative course was uncomplicated, and the patient was discharged on postoperative day 3 with preserved renal function and satisfactory graft perfusion. CONCLUSION: Robotic kidney autotransplantation with extracorporeal vascular reconstruction is a feasible minimally invasive option for carefully selected patients with complex ureteral pathology. This report provides technical insight into the operative strategy and reconstructive steps involved in RKAT.