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Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment

BACKGROUND AND OBJECTIVES: Recognizing that resectoscopic simulation may have an educational role, this pilot study was designed to evaluate the face validity and educational utility of a virtual reality uterine resectoscope training system. METHODS: A pilot prospective comparative study of novice a...

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Autores principales: Munro, Malcolm Gordon, Behling, David Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society of Laparoendoscopic Surgeons 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3148859/
https://www.ncbi.nlm.nih.gov/pubmed/21902963
http://dx.doi.org/10.4293/108680811X13071180406312
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author Munro, Malcolm Gordon
Behling, David Paul
author_facet Munro, Malcolm Gordon
Behling, David Paul
author_sort Munro, Malcolm Gordon
collection PubMed
description BACKGROUND AND OBJECTIVES: Recognizing that resectoscopic simulation may have an educational role, this pilot study was designed to evaluate the face validity and educational utility of a virtual reality uterine resectoscope training system. METHODS: A pilot prospective comparative study of novice and expert hysteroscopists' performance on a targeting exercise and myomectomy with the virtual loop electrode. At baseline, expert and novice resectoscopists each performed both exercises. Following instruction, novices practiced each exercise a total of 9 times with the 10th recorded as the training outcome. Results were compared both to baseline and to those of the experts. Data were analyzed with the paired t and Wilcoxon rank sum tests as appropriate. RESULTS: At baseline, all experts touched 4 targets in a mean of 33 seconds with no perforations, compared to a mean of 2 for the 11 novices in a mean of 57 seconds (P=0.0034) with one perforation. In 3 minutes, the experts removed a mean of 97.3% of the virtual myoma, compared to 66.1% for the novices (P=0.0153). On the 10th “run,” novices touched a mean of 4 targets in a mean of 23 seconds, an improvement from baseline (P=0.0004) and improved to 89% on the myoma resection exercise (P=0.0515) 36.3% over baseline. CONCLUSION: Although this pilot study has a relatively small sample size and represents the results at one institution, it demonstrates that virtual reality resectoscopic systems have the potential to measure and improve the technical skills of novices before they operate on human patients.
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spelling pubmed-31488592011-09-13 Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment Munro, Malcolm Gordon Behling, David Paul JSLS Scientific Papers BACKGROUND AND OBJECTIVES: Recognizing that resectoscopic simulation may have an educational role, this pilot study was designed to evaluate the face validity and educational utility of a virtual reality uterine resectoscope training system. METHODS: A pilot prospective comparative study of novice and expert hysteroscopists' performance on a targeting exercise and myomectomy with the virtual loop electrode. At baseline, expert and novice resectoscopists each performed both exercises. Following instruction, novices practiced each exercise a total of 9 times with the 10th recorded as the training outcome. Results were compared both to baseline and to those of the experts. Data were analyzed with the paired t and Wilcoxon rank sum tests as appropriate. RESULTS: At baseline, all experts touched 4 targets in a mean of 33 seconds with no perforations, compared to a mean of 2 for the 11 novices in a mean of 57 seconds (P=0.0034) with one perforation. In 3 minutes, the experts removed a mean of 97.3% of the virtual myoma, compared to 66.1% for the novices (P=0.0153). On the 10th “run,” novices touched a mean of 4 targets in a mean of 23 seconds, an improvement from baseline (P=0.0004) and improved to 89% on the myoma resection exercise (P=0.0515) 36.3% over baseline. CONCLUSION: Although this pilot study has a relatively small sample size and represents the results at one institution, it demonstrates that virtual reality resectoscopic systems have the potential to measure and improve the technical skills of novices before they operate on human patients. Society of Laparoendoscopic Surgeons 2011 /pmc/articles/PMC3148859/ /pubmed/21902963 http://dx.doi.org/10.4293/108680811X13071180406312 Text en © 2011 by JSLS, Journal of the Society of Laparoendoscopic Surgeons. This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives License (http://creativecommons.org/licenses/by-nc-nd/3.0/), which permits for noncommercial use, distribution, and reproduction in any medium, provided the original work is properly cited and is not altered in any way.
spellingShingle Scientific Papers
Munro, Malcolm Gordon
Behling, David Paul
Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title_full Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title_fullStr Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title_full_unstemmed Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title_short Virtual Reality Uterine Resectoscopic Simulator: Face and Construct Validation and Comparative Evaluation in an Educational Environment
title_sort virtual reality uterine resectoscopic simulator: face and construct validation and comparative evaluation in an educational environment
topic Scientific Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3148859/
https://www.ncbi.nlm.nih.gov/pubmed/21902963
http://dx.doi.org/10.4293/108680811X13071180406312
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