Literature DB >> 17204992

Using a virtual reality temporal bone simulator to assess otolaryngology trainees.

Molly Zirkle1, David W Roberson, Rudolf Leuwer, Adam Dubrowski.   

Abstract

OBJECTIVE: The objective of this study is to determine the feasibility of computerized evaluation of resident performance using hand motion analysis on a virtual reality temporal bone (VR TB) simulator. We hypothesized that both computerized analysis and expert ratings would discriminate the performance of novices from experienced trainees. We also hypothesized that performance on the virtual reality temporal bone simulator (VR TB) would differentiate based on previous drilling experience. STUDY
DESIGN: The authors conducted a randomized, blind assessment study.
METHODS: Nineteen volunteers from the Otolaryngology-Head and Neck Surgery training program at the University of Toronto drilled both a cadaveric TB and a simulated VR TB. Expert reviewers were asked to assess operative readiness of the trainee based on a blind video review of their performance. Computerized hand motion analysis of each participant's performance was conducted.
RESULTS: Expert raters were able to discriminate novices from experienced trainees (P < .05) on cadaveric temporal bones, and there was a trend toward discrimination on VR TB performance. Hand motion analysis showed that experienced trainees had better movement economy than novices (P < .05) on the VR TB.
CONCLUSION: Performance, as measured by hand motion analysis on the VR TB simulator, reflects trainees' previous drilling experience. This study suggests that otolaryngology trainees could accomplish initial temporal bone training on a VR TB simulator, which can provide feedback to the trainee, and may reduce the need for constant faculty supervision and evaluation.

Entities:  

Mesh:

Year:  2007        PMID: 17204992     DOI: 10.1097/01.mlg.0000248246.09498.b4

Source DB:  PubMed          Journal:  Laryngoscope        ISSN: 0023-852X            Impact factor:   3.325


  21 in total

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3.  [Navigation and robotics of the lateral skull base].

Authors:  M Caversaccio; C Stieger; S Weber; R Häusler; L-P Nolte
Journal:  HNO       Date:  2009-10       Impact factor: 1.284

Review 4.  Otologic Skills Training.

Authors:  Gregory J Wiet; Mads Sølvsten Sørensen; Steven Arild Wuyts Andersen
Journal:  Otolaryngol Clin North Am       Date:  2017-08-16       Impact factor: 3.346

Review 5.  Teaching Otolaryngology skills through simulation.

Authors:  N Clifton; C Klingmann; H Khalil
Journal:  Eur Arch Otorhinolaryngol       Date:  2011-03-23       Impact factor: 2.503

6.  Enhancing realism of wet surfaces in temporal bone surgical simulation.

Authors:  Thomas Kerwin; Han-Wei Shen; Don Stredney
Journal:  IEEE Trans Vis Comput Graph       Date:  2009 Sep-Oct       Impact factor: 4.579

7.  The common pig: a possible model for teaching ear surgery.

Authors:  André Gurr; K Kevenhörster; T Stark; M Pearson; S Dazert
Journal:  Eur Arch Otorhinolaryngol       Date:  2009-07-12       Impact factor: 2.503

8.  Assessment of skills using a virtual reality temporal bone surgery simulator.

Authors:  R Linke; A Leichtle; F Sheikh; C Schmidt; H Frenzel; H Graefe; B Wollenberg; J E Meyer
Journal:  Acta Otorhinolaryngol Ital       Date:  2013-08       Impact factor: 2.124

Review 9.  Performance Assessment for Mastoidectomy.

Authors:  Rishabh Sethia; Thomas F Kerwin; Gregory J Wiet
Journal:  Otolaryngol Head Neck Surg       Date:  2016-10-03       Impact factor: 3.497

10.  Advanced head and neck surgery training during the COVID-19 pandemic.

Authors:  Babak Givi; Michael G Moore; Arnaud F Bewley; Charles S Coffey; Marc A Cohen; Amy C Hessel; Scharukh Jalisi; Steven Kang; Jason G Newman; Liana Puscas; Maisie Shindo; Andrew Shuman; Punam Thakkar; Donald T Weed; Ara Chalian
Journal:  Head Neck       Date:  2020-05-08       Impact factor: 3.147

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