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A novel affordable user interface for robotic surgery training: design, development and usability study.

Authors :
Neri, Alberto
Coduri, Mara
Penza, Veronica
Santangelo, Andrea
Oliveri, Alessandra
Turco, Enrico
Pizzirani, Mattia
Trinceri, Elisa
Soriero, Domenico
Boero, Federico
Ricci, Serena
Mattos, Leonardo S.
Source :
Frontiers in Digital Health; 2024, p1-15, 15p
Publication Year :
2024

Abstract

Introduction: The use of robotic systems in the surgical domain has become groundbreaking for patients and surgeons in the last decades. While the annual number of robotic surgical procedures continues to increase rapidly, it is essential to provide the surgeon with innovative training courses along with the standard specialization path. To this end, simulators play a fundamental role. Currently, the high cost of the leading VR simulators limits their accessibility to educational institutions. The challenge lies in balancing highfidelity simulation with cost-effectiveness; however, few cost-effective options exist for robotic surgery training. Methods: This paper proposes the design, development and user-centered usability study of an affordable user interface to control a surgical robot simulator. It consists of a cart equipped with two haptic interfaces, a VR visor and two pedals. The simulations were created using Unity, which offers versatility for expanding the simulator to more complex scenes. An intuitive teleoperation control of the simulated robotic instruments is achieved through a high-level control strategy. Results and Discussion: Its affordability and resemblance to real surgeon consoles make it ideal for implementing robotic surgery training programs in medical schools, enhancing accessibility to a broader audience. This is demonstrated by the results of an usability study involving expert surgeons who use surgical robots regularly, expert surgeons without robotic surgery experience, and a control group. The results of the study, which was based on a traditional Peg-board exercise and Camera Control task, demonstrate the simulator's high usability and intuitive control across diverse user groups, including those with limited experience. This offers evidence that this affordable system is a promising solution for expanding robotic surgery training. [ABSTRACT FROM AUTHOR]

Details

Language :
English
Database :
Complementary Index
Journal :
Frontiers in Digital Health
Publication Type :
Academic Journal
Accession number :
179007205
Full Text :
https://doi.org/10.3389/fdgth.2024.1428534