A cost-effective model for training in Robot-Assisted Sacrocolpopexy

The number of robotically assisted sacrocolpopexy procedures are increasing; therefore, experienced clinicians are needed. Simulation-based cadaver models are challenging in aspects of cost and availability. Therefore, we need to look at alternative and more cost-effective models. The objective of this video was to design a new surgical model for the training of robotic-assisted sacrocolpopexy, which is affordable and accessible. We used a whole chicken model to simulate the female pelvic floor. We used Medtronic's Hugo™ RAS system as the robotic console in that procedure. A vaginal cuff was prepared from the proventriculus (stomach), and a Y shaped mesh was secured to the ischium to simulate the sacrocolpopexy procedure. This model is easily constructed and in our view is cost-effective. We have demonstrated a new valuable education tool that can serve as a practical simulation model to teach the sacrocolpopexy procedure and to improve trainees' skills. A larger cohort study size is essential to demonstrate the learning curve among young trainees using this simulation model.

Authors
Daykan Yair1, 2 , Farinha Rui 3, 4 , Schraffordt S.E.5 , Mottrie Alexander 3, 4 , O’Reilly B.A.1
Publisher
SPRINGER LONDON LTD
Number of issue
12
Language
English
Pages
3059-3062
Status
Published
Volume
34
Year
2023
Organizations
  • 1 Cork University Maternity Hospital
  • 2 Tel Aviv University
  • 3 Department of Urology
  • 4 ORSI Academy
  • 5 Meander Medical Center
Keywords
robotic assisted surgery; sacrocolpopexy; hysteropexy; Pelvic floor repair; gynecology; urology
Date of creation
01.07.2024
Date of change
01.07.2024
Short link
https://repository.rudn.ru/en/records/article/record/109475/
Share

Other records

Van Stan J.T., Allen S.T., Aubrey D.P., Berry Z.C., Biddick Matthew, Coenders-Gerrits M.A., Giordani Paolo, Gotsch S.G., Gutmann E.D., Kuzyakov Yakov, Magyar Donát, Mella V.S., Mueller K.E., Ponette-González A.G., Porada Philipp, Rosenfeld C.E., Simmons Jack, Sridhar K.R., Stubbins Aron, Swanson Travis
Bioscience. American Institute of Biological Science. Vol. 73. 2023. P. 441-452