Simulation and Training in Robot-Assisted Urological Surgery: From Model to Patient

被引:2
作者
Proietti, Flavia [1 ]
Flammia, Rocco Simone [1 ]
Licari, Leslie Claire [2 ]
Bologna, Eugenio [2 ]
Anceschi, Umberto [1 ]
Ferriero, Maria Consiglia [1 ]
Tuderti, Gabriele [1 ]
Mastroianni, Riccardo [1 ]
Brassetti, Aldo [1 ]
Simone, Giuseppe [1 ]
Leonardo, Costantino [1 ]
机构
[1] IRCCS Regina Elena Natl Canc Inst, Dept Urol, Via Elio Chianesi 53, I-00144 Rome, Italy
[2] Sapienza Univ Rome, Policlin Umberto I, Dept Maternal & Child Hlth & Urol Sci, Viale Policlin 155, I-00161 Rome, Italy
关键词
simulation; training; virtual reality; dual console; robot-assisted surgery; robotic curricula; urology; VIRTUAL-REALITY; NONTECHNICAL SKILLS; VALIDATION; PERFORMANCE; OUTCOMES; FUTURE;
D O I
10.3390/jcm13061590
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
(1) Background: Simulation-based training has revolutionized surgical education, providing a solution to the changing demands of surgical training and performance. The increasing demand for standardized training in robotic surgery has accelerated the adoption of simulation-based training as a necessary component of modern surgical education. This study examines the existing literature on training approaches employed in robot-assisted urological surgery; (2) Methods: The authors conducted a standardized search of online databases. Upon collecting the articles, the authors assessed their relevance and content before proceeding with the drafting of the text; (3) Results: The use of simulators is supported by convincing evidence that shows an advantage in the acquisition of robotic skills. Urological societies have created detailed training programs for robotic surgery that guide beginners through the entire process of skill acquisition; (4) Conclusions: The future landscape for robotic urology training is likely to involve organized, obligatory, and centralized training, which may be overseen by urologic associations.
引用
收藏
页数:13
相关论文
共 50 条
[21]   Chicken RAPS: Chicken Robot-assisted Pyeloplasty Simulation. Validation Study of a Novel Chicken Model for Wet Laboratory Training in Robot-assisted Pyeloplasty [J].
Liakos, Nikolaos ;
Moritz, Rudolf ;
Leyh-Bannurah, Sami-Ramzi ;
Guner, Oezlem ;
Witt, Joern H. ;
Wagner, Christian .
EUROPEAN UROLOGY OPEN SCIENCE, 2022, 46 :82-87
[22]   Effectiveness of a dedicated robot-assisted surgery training program [J].
Attalla, Kyrollis ;
Raza, Syed Johar ;
Rehman, Shabnam ;
Din, Rakeeba ;
Stegemann, Andrew ;
Field, Erinn ;
Curtin, Leslie ;
Sexton, Sandra ;
Bienko, Marlene ;
Bhandari, Mahendra ;
Guru, Khurshid A. .
CANADIAN JOURNAL OF UROLOGY, 2013, 20 (06) :7084-7090
[23]   Current Standards for Training in Robot-assisted Surgery and Endourology: A Systematic Review [J].
Basile, Giuseppe ;
Gallioli, Andrea ;
Diana, Pietro ;
Gallagher, Anthony ;
Larcher, Alessandro ;
Graefen, Markus ;
Harke, Nina ;
Traxer, Olivier ;
Tilki, Derya ;
Van Der Poel, Henk ;
Emiliani, Esteban ;
Angerri, Oriol ;
Wagner, Christian ;
Montorsi, Francesco ;
Wiklund, Peter ;
Somani, Bhaskar ;
Buffi, Nicolo ;
Mottrie, Alex ;
Liatsikos, Evangelos ;
Breda, Alberto .
EUROPEAN UROLOGY, 2024, 86 (02) :130-145
[24]   Comparisons between aviation and robot-assisted surgery in gynaecology: lessons from safety practices in high-risk industries [J].
Wood, Thomas Charles ;
Ovenden, Kenneth ;
Rahman, Rumana ;
Raglan, Olivia ;
Bainton, Thomas ;
Ahmed, Jeffrey ;
Raza, Amer .
JOURNAL OF ROBOTIC SURGERY, 2025, 19 (01)
[25]   Global trends in paediatric robot-assisted urological surgery: a bibliometric and Progressive Scholarly Acceptance analysis [J].
Cundy T.P. ;
Harley S.J.D. ;
Marcus H.J. ;
Hughes-Hallett A. ;
Khurana S. .
Journal of Robotic Surgery, 2018, 12 (1) :109-115
[26]   Role of haptic feedback technologies and novel engineering developments for surgical training and robot-assisted surgery [J].
Laga Boul-Atarass, Iman ;
Rubio Manzanares Dorado, Mercedes ;
Padillo-Eguia, Andres ;
Racero-Moreno, Jesus ;
Eguia-Salinas, Ignacio ;
Pereira-Arenas, Sheila ;
Jimenez-Rodriguez, Rosa Maria ;
Padillo-Ruiz, Javier .
FRONTIERS IN ROBOTICS AND AI, 2025, 12
[27]   Uncertainty-Aware Self-Supervised Learning for Cross-Domain Technical Skill Assessment in Robot-Assisted Surgery [J].
Wang, Ziheng ;
Mariani, Andrea ;
Menciassi, Arianna ;
De Momi, Elena ;
Fey, Ann Majewicz .
IEEE TRANSACTIONS ON MEDICAL ROBOTICS AND BIONICS, 2023, 5 (02) :301-311
[28]   Depth Cues in Augmented Reality for Training of Robot-Assisted Minimally Invasive Surgery [J].
Christensen, Nicklas H. ;
Hjermitslev, Oliver G. ;
Falk, Frederik ;
Madsen, Marco B. ;
Ostergaard, Frederik H. ;
Kibsgaard, Martin ;
Kraus, Martin ;
Poulsen, Johan ;
Petersson, Jane .
PROCEEDINGS OF THE 21ST INTERNATIONAL ACADEMIC MINDTREK CONFERENCE (ACADEMIC MINDTREK), 2017, :120-126
[29]   Force-based assessment of tissue handling skills in simulation training for robot-assisted surgery [J].
Rahimi, A. Masie ;
Hardon, Sem F. ;
Willuth, E. ;
Lang, F. ;
Haney, Caelan M. ;
Felinska, Eleni A. ;
Kowalewski, Karl-Friedrich ;
Mueller-Stich, Beat P. ;
Horeman, Tim ;
Nickel, F. ;
Daams, Freek .
SURGICAL ENDOSCOPY AND OTHER INTERVENTIONAL TECHNIQUES, 2023, 37 (06) :4414-4420
[30]   Validation of ergonomic instructions in robot-assisted surgery simulator training [J].
Van't Hullenaar, C. D. P. ;
Mertens, A. C. ;
Ruurda, J. P. ;
Broeders, I. A. M. J. .
SURGICAL ENDOSCOPY AND OTHER INTERVENTIONAL TECHNIQUES, 2018, 32 (05) :2533-2540