Investigative and Clinical Urology (Sep 2024)

Extraperitoneal single-port robot-assisted radical prostatectomy: Short-term outcomes and technique description

  • Hyeok Jae Kwon,
  • San Kang,
  • Seung Ah Rhew,
  • Chang Eil Yoon,
  • Dongho Shin,
  • Seokhwan Bang,
  • Hyong Woo Moon,
  • Woong Jin Bae,
  • Hyuk Jin Cho,
  • U-Syn Ha,
  • Ji Youl Lee,
  • Sae Woong Kim,
  • Sung-Hoo Hong

DOI
https://doi.org/10.4111/icu.20230427
Journal volume & issue
Vol. 65, no. 5
pp. 442 – 450

Abstract

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Purpose: We evaluated the feasibility, safety, and learning curve of extraperitoneal single-port robot-assisted radical prostatectomy (SP-RARP) and introduced innovative surgical techniques to maintain the instrument positions during the procedures. Materials and Methods: A cohort of 100 patients underwent extraperitoneal SP-RARP at our institution from December 2021 to April 2023. The procedures were performed by an experienced urology surgeon utilizing two surgical techniques for dissecting the posterior aspect of the prostate—“changing instrument roles” and “using camera inversion”—to prevent positional shifts between the camera and instruments. Results: The mean operation time for SP-RARP was 93.58 minutes, and the mean console time was 65.16 minutes. The mean estimated blood loss during the procedures was 109.30 mL. No cases necessitated conversion to multi-port robot, laparoscopy, or open surgery, and there were no major complications during the hospital stay or in the short-term follow-up. Early outcomes of post-radical prostatectomy indicated a biochemical recurrence rate of 4.0% over a mean follow-up duration of 6.40 months, with continence and potency recovery rates of 92.3% and 55.8%, respectively. Analysis of the learning curve showed no significant differences in operation time, console time, and positive surgical margin rates between the initial and latter 50 cases. Conclusions: Extraperitoneal SP-RARP is a feasible and safe option for the treatment of localized prostate cancer in skilled hands. Continued accrual of cases is essential for future comparisons of SP-RARP with multiport approaches.

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