Literature DB >> 24051889

The development of a virtual simulator for training neurosurgeons to perform and perfect endoscopic endonasal transsphenoidal surgery.

Gail Rosseau1, Julian Bailes, Rolando del Maestro, Anne Cabral, Nusrat Choudhury, Olivier Comas, Patricia Debergue, Gino De Luca, Jordan Hovdebo, Di Jiang, Denis Laroche, Andre Neubauer, Valerie Pazos, Francis Thibault, Robert Diraddo.   

Abstract

BACKGROUND: A virtual reality (VR) neurosurgical simulator with haptic feedback may provide the best model for training and perfecting surgical techniques for transsphenoidal approaches to the sella turcica and cranial base. Currently there are 2 commercially available simulators: NeuroTouch (Cranio and Endo) developed by the National Research Council of Canada in collaboration with surgeons at teaching hospitals in Canada, and the Immersive Touch. Work in progress on other simulators at additional institutions is currently unpublished.
OBJECTIVE: This article describes a newly developed application of the NeuroTouch simulator that facilitates the performance and assessment of technical skills for endoscopic endonasal transsphenoidal surgical procedures as well as plans for collecting metrics during its early use.
METHODS: The main components of the NeuroTouch-Endo VR neurosurgical simulator are a stereovision system, bimanual haptic tool manipulators, and high-end computers. The software engine continues to evolve, allowing additional surgical tasks to be performed in the VR environment. Device utility for efficient practice and performance metrics continue to be developed by its originators in collaboration with neurosurgeons at several teaching hospitals in the United States. Training tasks are being developed for teaching 1- and 2-nostril endonasal transsphenoidal approaches. Practice sessions benefit from anatomic labeling of normal structures along the surgical approach and inclusion (for avoidance) of critical structures, such as the internal carotid arteries and optic nerves.
CONCLUSION: The simulation software for NeuroTouch-Endo VR simulation of transsphenoidal surgery provides an opportunity for beta testing, validation, and evaluation of performance metrics for use in neurosurgical residency training. ABBREVIATIONS: CTA, cognitive task analysisVR, virtual reality.

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Mesh:

Year:  2013        PMID: 24051889     DOI: 10.1227/NEU.0000000000000112

Source DB:  PubMed          Journal:  Neurosurgery        ISSN: 0148-396X            Impact factor:   4.654


  15 in total

1.  Operator experience determines performance in a simulated computer-based brain tumor resection task.

Authors:  Terrell Holloway; Zachary S Lorsch; Michael A Chary; Stanislaw Sobotka; Maximillian M Moore; Anthony B Costa; Rolando F Del Maestro; Joshua Bederson
Journal:  Int J Comput Assist Radiol Surg       Date:  2015-03-26       Impact factor: 2.924

2.  A practical 3D printed simulator for endoscopic endonasal transsphenoidal surgery to improve basic operational skills.

Authors:  Guodao Wen; ZiXiang Cong; KaiDong Liu; Chao Tang; Chunyu Zhong; Liwen Li; XuJie Dai; Chiyuan Ma
Journal:  Childs Nerv Syst       Date:  2016-03-21       Impact factor: 1.475

3.  Creation of a Virtual Anatomy System based on Chinese Visible Human data sets.

Authors:  Binji Fang; Yi Wu; Chun Chu; Ying Li; Na Luo; Kaijun Liu; Liwen Tan; Shaoxiang Zhang
Journal:  Surg Radiol Anat       Date:  2016-09-23       Impact factor: 1.246

4.  Primary Dural Repair via an Endoscopic Endonasal Corridor: Preliminary Development of a 3D-Printed Model for Training.

Authors:  Ivanna Nebor; Ahmed E Hussein; Kora Montemagno; Rebecca Fumagalli; Ikrame Labiad; Alice Xu; Zoe Anderson; Yash Patil; Ahmad R Sedaghat; Jonathan A Forbes
Journal:  J Neurol Surg B Skull Base       Date:  2021-03-02

5.  Neurosurgical virtual reality simulation metrics to assess psychomotor skills during brain tumor resection.

Authors:  Hamed Azarnoush; Gmaan Alzhrani; Alexander Winkler-Schwartz; Fahad Alotaibi; Nicholas Gelinas-Phaneuf; Valérie Pazos; Nusrat Choudhury; Jawad Fares; Robert DiRaddo; Rolando F Del Maestro
Journal:  Int J Comput Assist Radiol Surg       Date:  2014-06-27       Impact factor: 2.924

6.  The McGill simulator for endoscopic sinus surgery (MSESS): a validation study.

Authors:  Rickul Varshney; Saul Frenkiel; Lily H P Nguyen; Meredith Young; Rolando Del Maestro; Anthony Zeitouni; Elias Saad; W Robert J Funnell; Marc A Tewfik
Journal:  J Otolaryngol Head Neck Surg       Date:  2014-10-24

7.  Simulator-Based Angiography and Endovascular Neurosurgery Curriculum: A Longitudinal Evaluation of Performance Following Simulator-Based Angiography Training.

Authors:  J Scott Pannell; David R Santiago-Dieppa; Arvin R Wali; Brian R Hirshman; Jeffrey A Steinberg; Vincent J Cheung; David Oveisi; Jon Hallstrom; Alexander A Khalessi
Journal:  Cureus       Date:  2016-08-29

8.  Operative planning aid for optimal endoscopic third ventriculostomy entry points in pediatric cases.

Authors:  Zsolt Zador; David J Coope; Abteen Mostofi; Ian D Kamaly-Asl
Journal:  Childs Nerv Syst       Date:  2017-01-18       Impact factor: 1.475

9.  Virtual Reality Simulators for Endoscopic Sinus and Skull Base Surgery: The Present and Future.

Authors:  Do Hyun Kim; Yeonji Kim; Jae-Sung Park; Sung Won Kim
Journal:  Clin Exp Otorhinolaryngol       Date:  2018-10-18       Impact factor: 3.372

Review 10.  Simulation training in neurosurgery: advances in education and practice.

Authors:  Sanjay Konakondla; Reginald Fong; Clemens M Schirmer
Journal:  Adv Med Educ Pract       Date:  2017-07-14
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