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Published in: Updates in Surgery 3/2018

01-09-2018 | Original Article

Proficiency-based training of medical students using virtual simulators for laparoscopy and robot-assisted surgery: results of a pilot study

Authors: Andrea Moglia, Sara Sinceri, Vincenzo Ferrari, Mauro Ferrari, Franco Mosca, Luca Morelli

Published in: Updates in Surgery | Issue 3/2018

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Abstract

Proficiency-based training has become essential in the training of surgeons such that on completion they can execute complex operations with novel surgical approaches including direct manual laparoscopic surgery (DMLS) and robotically assisted laparoscopic surgery (RALS). To this effect, several virtual reality (VR) simulators have been developed. The objective of the present study was to assess and establish proficiency gain curves for medical students on VR simulators for DMLS and RALS. Five medical students participated in training course consisting of didactic teaching and practical hands-on training with VR simulators for DMLS and RALS. Evaluation of didactic component was by questionnaire completed by participating students, who also were required to undertake selected exercises to reach proficiency at each VR simulator: (1) 12 tasks on LapSim VR (Surgical Science, Gothenburg, Sweden) for DMLS, and (2) six selected exercises on the dV-Trainer Mimic (Seattle, WA, United States). The five medical students reached the 60% threshold on the questionnaire-based didactic component. During selected hands-on simulation on VR simulators, students with previous experience with simulators (n = 3) outperformed those without (n = 2) in ten out of twelve LapSim tasks and all six at dV-Trainer, by requiring fewer attempts to reach proficiency although the difference was not significant (p < 0.05). In this work, we developed a proficiency-based training program for medical undergraduates based on surgical simulation for DMLS and RALS.z. Larger studies are needed to evaluate the benefit of this program in stimulating interest for surgical career amongst medical students after the qualify.
Literature
1.
go back to reference Gallagher AG, O’ Sullivan GC (2012) Fundamentals of surgical simulation. Springer, BerlinCrossRef Gallagher AG, O’ Sullivan GC (2012) Fundamentals of surgical simulation. Springer, BerlinCrossRef
2.
go back to reference Dawe SR, Windsor JA, Broeders JA et al (2014) A systematic review of surgical skills transfer after simulation-based training: laparoscopic cholecystectomy and endoscopy. Ann Surg 259:236–248CrossRefPubMed Dawe SR, Windsor JA, Broeders JA et al (2014) A systematic review of surgical skills transfer after simulation-based training: laparoscopic cholecystectomy and endoscopy. Ann Surg 259:236–248CrossRefPubMed
3.
go back to reference Moglia A, Ferrari V, Morelli L, Ferrari M, Mosca F, Cuschieri A (2016) A systematic review of virtual reality simulators for robot-assisted surgery. Eur Urol 69(6):1065–1080CrossRefPubMed Moglia A, Ferrari V, Morelli L, Ferrari M, Mosca F, Cuschieri A (2016) A systematic review of virtual reality simulators for robot-assisted surgery. Eur Urol 69(6):1065–1080CrossRefPubMed
4.
go back to reference Palter VN, Grantcharov T, Harvey A, Macrae HM (2011) Ex vivo technical skills training transfers to the operating room and enhances cognitive learning: a randomized controlled trial. Ann Surg 253(5):886–889CrossRefPubMed Palter VN, Grantcharov T, Harvey A, Macrae HM (2011) Ex vivo technical skills training transfers to the operating room and enhances cognitive learning: a randomized controlled trial. Ann Surg 253(5):886–889CrossRefPubMed
5.
go back to reference Rehman S, Raza SJ, Stegemann AP et al (2013) Simulation-based robot-assisted surgical training: a health economic evaluation. Int J Surg 11:841–846CrossRefPubMed Rehman S, Raza SJ, Stegemann AP et al (2013) Simulation-based robot-assisted surgical training: a health economic evaluation. Int J Surg 11:841–846CrossRefPubMed
6.
go back to reference Lee JT, Qiu M, Teshome M, Raghavan SS, Tedesco MM, Dalman RL (2009) The utility of endovascular simulation to improve technical performance and stimulate continued interest of preclinical medical students in vascular surgery. J Surg Educ 66(6):367–373CrossRefPubMed Lee JT, Qiu M, Teshome M, Raghavan SS, Tedesco MM, Dalman RL (2009) The utility of endovascular simulation to improve technical performance and stimulate continued interest of preclinical medical students in vascular surgery. J Surg Educ 66(6):367–373CrossRefPubMed
8.
go back to reference Larsen CR, Soerensen JL, Grantcharov TP, Dalsgaard T, Schouenborg L, Ottosen C, Schroeder TV, Ottesen BS (2009) Effect of virtual reality training on laparoscopic surgery: randomised controlled trial. BMJ 14(338):b1802CrossRef Larsen CR, Soerensen JL, Grantcharov TP, Dalsgaard T, Schouenborg L, Ottosen C, Schroeder TV, Ottesen BS (2009) Effect of virtual reality training on laparoscopic surgery: randomised controlled trial. BMJ 14(338):b1802CrossRef
9.
go back to reference Culligan P, Gurshumov E, Lewis C, Priestley J, Komar J, Salamon C (2014) Predictive validity of a training protocol using a robotic surgery simulator. Female Pelvic Med Reconstr Surg 20(1):48–51CrossRefPubMed Culligan P, Gurshumov E, Lewis C, Priestley J, Komar J, Salamon C (2014) Predictive validity of a training protocol using a robotic surgery simulator. Female Pelvic Med Reconstr Surg 20(1):48–51CrossRefPubMed
Metadata
Title
Proficiency-based training of medical students using virtual simulators for laparoscopy and robot-assisted surgery: results of a pilot study
Authors
Andrea Moglia
Sara Sinceri
Vincenzo Ferrari
Mauro Ferrari
Franco Mosca
Luca Morelli
Publication date
01-09-2018
Publisher
Springer International Publishing
Published in
Updates in Surgery / Issue 3/2018
Print ISSN: 2038-131X
Electronic ISSN: 2038-3312
DOI
https://doi.org/10.1007/s13304-018-0559-8

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