Short survey 2020

SimLife® technology in surgical training – a dynamic simulation model

Journal of Visceral Surgery
Journal · Vol. 157 · Issue 3 · pp. S117-S122
Abstract

In initial surgical formation and continuing surgical education, simulation has become a compulsory technique. Just as becoming an airplane pilot requires skills, the acquisition of technical skills is essential to becoming a surgeon. The old apprenticeship model “I see, I do, and I teach” is no longer entirely compatible with the socio-economic constraints of the operating room, demands for guaranteeing patient safety, and the compulsory reduction in resident working hours. We propose a new surgical simulation model, using cadavers donated to science that are rendered dynamic with pulsatile vascularization and ventilation. Such models are available for simulation of both open surgery and laparoscopy. Surgery on a human body donated to science makes it possible to accurately reproduce the hand gestures characteristic of surgical procedures. Learning in an appropriate and realistic simulation context increases the level of skills acquired by residents and reduces stress and anxiety when they come to perform real procedures. © 2020

Keywords

Author Keywords

Surgical Simulation SimLife

Index Keywords

clinical competence human medical education procedures Humans Internship and Residency curriculum education simulation training general surgery Education, Medical, Graduate computer simulation
Author Affiliations
Laboratoire Anatomie Biomécanique Simulation, Université de Poitiers, Poitiers, Nouvelle-Aquitaine, France, Service de Chirurgie Viscérale et endocrinienne, Université de Poitiers, Poitiers, Nouvelle-Aquitaine, France
Laboratoire Anatomie Biomécanique Simulation, Université de Poitiers, Poitiers, Nouvelle-Aquitaine, France, Institut p', Université de Poitiers, Poitiers, Nouvelle-Aquitaine, France
Laboratoire Anatomie Biomécanique Simulation, Université de Poitiers, Poitiers, Nouvelle-Aquitaine, France
Funding & Acknowledgements
No funding information
References 10 References
1 Regenbogen, Scott E., Patterns of technical error among surgical malpractice claims: An analysis of strategies to prevent injury to surgical patients, Annals of Surgery, 246, 5, pp. 705-711, (2007)
2 Bridges, Matthew A., The financial impact of teaching surgical residents in the operating room, American Journal of Surgery, 177, 1, pp. 28-32, (1999)
3 Audio Visual Methods in Teaching, (1969)
4 Experiential Learning Experience as the Source of Learning and Development, (1984)
5 Gaba, David M., The future vision of simulation in healthcare., Simulation in healthcare : journal of the Society for Simulation in Healthcare, 2, 2, pp. 126-135, (2007)
6 Yiasemidou, Marina, Perceptions About the Present and Future of Surgical Simulation: A National Study of Mixed Qualitative and Quantitative Methodology, Journal of Surgical Education, 74, 1, pp. 108-116, (2017)
7 Agha, R. Ahmed, The role and validity of surgical simulation, International Surgery, 100, 2, pp. 350-357, (2015)
8 Journal of Vocational and Technical Education, (1999)
9 Dearani, Joseph A., The role of imaging, deliberate practice, structure, and improvisation in approaching surgical perfection, Journal of Thoracic and Cardiovascular Surgery, 154, 4, pp. 1329-1336, (2017)
10 Murty, Vishnu P., Decision-making increases episodic memory via postencoding consolidation, Journal of Cognitive Neuroscience, 31, 9, pp. 1308-1317, (2018)
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