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Page 10 of 10 Ditonno et al. Mini-invasive Surg 2023;7:36 https://dx.doi.org/10.20517/2574-1225.2023.62
initial description and standardisation of technique. J Minim Access Surg 2023;19:278-81. DOI PubMed PMC
8. Glaser ZA, Burns ZR, Fang AM, et al. Single- versus multi-port robotic partial nephrectomy: a comparative analysis of perioperative
outcomes and analgesic requirements. J Robot Surg 2022;16:695-703. DOI
9. Palacios AR, Morgantini L, Trippel R, Crivellaro S, Abern MR. Comparison of perioperative outcomes between retroperitoneal single-
port and multiport robot-assisted partial nephrectomies. J Endourol 2022;36:1545-50. DOI PubMed
10. Francavilla S, Abern MR, Dobbs RW, et al. Single-port robot assisted partial nephrectomy: initial experience and technique with the
da Vinci single-port platform (IDEAL Phase 1). Minerva Urol Nephrol 2022;74:216-24. DOI
11. Na JC, Lee HH, Yoon YE, et al. True single-site partial nephrectomy using the SP surgical system: feasibility, comparison with the Xi
single-site platform, and step-by-step procedure guide. J Endourol 2020;34:169-74. DOI
12. Maurice MJ, Ramirez D, Kaouk JH. Robotic laparoendoscopic single-site retroperitioneal renal surgery: initial investigation of a
purpose-built single-port surgical system. Eur Urol 2017;71:643-7. DOI PubMed
13. Bang S, Shin D, Moon HW, et al. Comparison of transperitoneal and retroperitoneal partial nephrectomy with single-port robot. J
Endourol 2023;37:551-6. DOI
14. Pellegrino AA, Chen G, Morgantini L, Calvo RS, Crivellaro S. Simplifying retroperitoneal robotic single-port surgery: novel supine
anterior retroperitoneal access. Eur Urol 2023;84:223-8. DOI PubMed
15. Kutikov A, Uzzo RG. The R.E.N.A.L. nephrometry score: a comprehensive standardized system for quantitating renal tumor size,
location and depth. J Urol 2009;182:844-53. DOI
16. Shukla D, Small A, Mehrazin R, Palese M. Single-port robotic-assisted partial nephrectomy: initial clinical experience and lessons
learned for successful outcomes. J Robot Surg 2021;15:293-8. DOI PubMed
17. Okhawere KE, Beksac AT, Wilson MP, et al. A propensity-matched comparison of the perioperative outcomes between single-port
and multi-port robotic assisted partial nephrectomy: a report from the single port advanced research consortium (SPARC). J Endourol
2022;36:1526-31. DOI
18. Li KP, Chen SY, Wang CY, Yang L. Perioperative and oncologic outcomes of single-port versus conventional robotic-assisted partial
nephrectomy: an evidence-based analysis of comparative outcomes. J Robot Surg 2023;17:765-77. DOI PubMed
19. Khalifeh A, Autorino R, Hillyer SP, et al. Comparative outcomes and assessment of trifecta in 500 robotic and laparoscopic partial
nephrectomy cases: a single surgeon experience. J Urol 2013;189:1236-42. DOI
20. Cignoli D, Fallara G, Larcher A, Rosiello G, Montorsi F, Capitanio U. How to improve outcome in nephron-sparing surgery: the
impact of new techniques. Curr Opin Urol 2021;31:255-61. DOI PubMed
21. Lee H, Song BD, Byun SS, Lee SE, Hong SK. Impact of warm ischaemia time on postoperative renal function after partial
nephrectomy for clinical T1 renal cell carcinoma: a propensity score-matched study. BJU Int 2018;121:46-52. DOI
22. Rosiello G, Larcher A, Fallara G, et al. The impact of intraoperative bleeding on the risk of chronic kidney disease after nephron-
sparing surgery. World J Urol 2021;39:2553-8. DOI
23. Kim JE, Kaldany A, Lichtbroun B, et al. Single-port robotic radical prostatectomy: short-term outcomes and learning curve. J
Endourol 2022;36:1285-9. DOI PubMed PMC
24. Lenfant L, Kim S, Aminsharifi A, Sawczyn G, Kaouk J. Floating docking technique: a simple modification to improve the working
space of the instruments during single-port robotic surgery. World J Urol 2021;39:1299-305. DOI PubMed
25. Crivellaro S. In favor of extraperitoneal robotic radical prostatectomy: back to the future through a single-port approach. J Endourol
2021;35:1121-2. DOI