(1) Background: Innovation and continuous demand in the field of visual enhancing technologies and video streaming have led to the discovery of new systems capable of improving visualization and illumination of the surgical field. The exoscope was brought into neurosurgical routine, and nearly ten years later, modern 3D systems have been introduced and tested, giving encouraging results. (2) Methods: In order to evaluate the surgeon's confidence with the exoscope and their increasing ability in terms of time spent and quality of the final achievement since their first encounter with the technique, an experimental trial on 18 neurosurgeons from a single Institution was performed to evaluate the learning curve for the use of the VITOM-3D exoscope in neurosurgical practice on a model of brain and dura mater. (3) Results: A significant improvement in the quality of the performance, number of errors made, and reduction in the time was found after the third iteration of the task, by when almost all the participants felt more comfortable and confident. No significant differences between senior neurosurgeons and resident neurosurgeons were reported. (4) Conclusions: Our results show that three iterations are enough to gain confidence with the exoscope from its first use, regardless of previous experience and training with an operating microscope.

Giammalva, G. R., Paolini, F., Meccio, F., Giovannini, E. A., Provenzano, A., Bonosi, L., Brunasso, L., Costanzo, R., Gerardi, R. M., Di Bonaventura, R., Signorelli, F., Albanese, A., Iacopino, D. G., Maugeri, R., Visocchi, M., Assessing the Training in Neurosurgery with the Implementation of VITOM-3D Exoscope: Learning Curve on Experimental Model in Neurosurgical Practice, <<BRAIN SCIENCES>>, 2023; 13 (10): N/A-N/A. [doi:10.3390/brainsci13101409] [https://hdl.handle.net/10807/274596]

Assessing the Training in Neurosurgery with the Implementation of VITOM-3D Exoscope: Learning Curve on Experimental Model in Neurosurgical Practice

Di Bonaventura, Rina;Signorelli, Francesco;Albanese, Alessio;Visocchi, Massimiliano
2023

Abstract

(1) Background: Innovation and continuous demand in the field of visual enhancing technologies and video streaming have led to the discovery of new systems capable of improving visualization and illumination of the surgical field. The exoscope was brought into neurosurgical routine, and nearly ten years later, modern 3D systems have been introduced and tested, giving encouraging results. (2) Methods: In order to evaluate the surgeon's confidence with the exoscope and their increasing ability in terms of time spent and quality of the final achievement since their first encounter with the technique, an experimental trial on 18 neurosurgeons from a single Institution was performed to evaluate the learning curve for the use of the VITOM-3D exoscope in neurosurgical practice on a model of brain and dura mater. (3) Results: A significant improvement in the quality of the performance, number of errors made, and reduction in the time was found after the third iteration of the task, by when almost all the participants felt more comfortable and confident. No significant differences between senior neurosurgeons and resident neurosurgeons were reported. (4) Conclusions: Our results show that three iterations are enough to gain confidence with the exoscope from its first use, regardless of previous experience and training with an operating microscope.
2023
Inglese
Giammalva, G. R., Paolini, F., Meccio, F., Giovannini, E. A., Provenzano, A., Bonosi, L., Brunasso, L., Costanzo, R., Gerardi, R. M., Di Bonaventura, R., Signorelli, F., Albanese, A., Iacopino, D. G., Maugeri, R., Visocchi, M., Assessing the Training in Neurosurgery with the Implementation of VITOM-3D Exoscope: Learning Curve on Experimental Model in Neurosurgical Practice, <<BRAIN SCIENCES>>, 2023; 13 (10): N/A-N/A. [doi:10.3390/brainsci13101409] [https://hdl.handle.net/10807/274596]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10807/274596
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