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The feasibility of a mixed reality surgical training environment

Identifieur interne : 005168 ( Main/Exploration ); précédent : 005167; suivant : 005169

The feasibility of a mixed reality surgical training environment

Auteurs : Louise Moody [Royaume-Uni] ; Alan Waterworth [Royaume-Uni] ; Avril D. Mccarthy [Royaume-Uni] ; Peter J. Harley [Royaume-Uni] ; Rod H. Smallwood [Royaume-Uni]

Source :

RBID : Pascal:08-0308653

Descripteurs français

English descriptors

Abstract

The Sheffield knee arthroscopy training system (SKATS) was originally a visual-based virtual environment without haptic feedback, but has been further developed as a mixed reality-training environment through the use of tactile augmentation (or passive haptics). The design of the new system is outlined and then tested. In the first experiment described, the effect of tactile augmentation on performance is considered by comparing novice performance using the original and mixed reality system. In the second experiment the mixed reality system is assessed in terms of construct validity by comparing the performance of users with differing levels of surgical expertise. The results are discussed in terms of the validity of a mixed reality environment for training knee arthroscopy.


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Le document en format XML

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<div type="abstract" xml:lang="en">The Sheffield knee arthroscopy training system (SKATS) was originally a visual-based virtual environment without haptic feedback, but has been further developed as a mixed reality-training environment through the use of tactile augmentation (or passive haptics). The design of the new system is outlined and then tested. In the first experiment described, the effect of tactile augmentation on performance is considered by comparing novice performance using the original and mixed reality system. In the second experiment the mixed reality system is assessed in terms of construct validity by comparing the performance of users with differing levels of surgical expertise. The results are discussed in terms of the validity of a mixed reality environment for training knee arthroscopy.</div>
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