Literature DB >> 19546800

The visible ear simulator: a public PC application for GPU-accelerated haptic 3D simulation of ear surgery based on the visible ear data.

Mads Solvsten Sorensen1, Jesper Mosegaard, Peter Trier.   

Abstract

BACKGROUND: Existing virtual simulators for middle ear surgery are based on 3-dimensional (3D) models from computed tomographic or magnetic resonance imaging data in which image quality is limited by the lack of detail (maximum, approximately 50 voxels/mm3), natural color, and texture of the source material.Virtual training often requires the purchase of a program, a customized computer, and expensive peripherals dedicated exclusively to this purpose.
MATERIALS AND METHODS: The Visible Ear freeware library of digital images from a fresh-frozen human temporal bone was segmented, and real-time volume rendered as a 3D model of high-fidelity, true color, and great anatomic detail and realism of the surgically relevant structures. A haptic drilling model was developed for surgical interaction with the 3D model.
RESULTS: Realistic visualization in high-fidelity (approximately 125 voxels/mm3) and true color, 2D, or optional anaglyph stereoscopic 3D was achieved on a standard Core 2 Duo personal computer with a GeForce 8,800 GTX graphics card, and surgical interaction was provided through a relatively inexpensive (approximately $2,500) Phantom Omni haptic 3D pointing device.
CONCLUSION: This prototype is published for download (approximately 120 MB) as freeware at http://www.alexandra.dk/ves/index.htm.With increasing personal computer performance, future versions may include enhanced resolution (up to 8,000 voxels/mm3) and realistic interaction with deformable soft tissue components such as skin, tympanic membrane, dura, and cholesteatomas-features some of which are not possible with computed tomographic-/magnetic resonance imaging-based systems.

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Year:  2009        PMID: 19546800     DOI: 10.1097/MAO.0b013e3181a5299b

Source DB:  PubMed          Journal:  Otol Neurotol        ISSN: 1531-7129            Impact factor:   2.311


  25 in total

1.  Interactive bone drilling using a 2D pointing device to support Microendoscopic Discectomy planning.

Authors:  Keiho Imanishi; Megumi Nakao; Masahiko Kioka; Masato Mori; Munehito Yoshida; Takashi Takahashi; Kotaro Minato
Journal:  Int J Comput Assist Radiol Surg       Date:  2010-04-04       Impact factor: 2.924

2.  Modifications to a 3D-printed temporal bone model for augmented stapes fixation surgery teaching.

Authors:  Yann Nguyen; Elisabeth Mamelle; Daniele De Seta; Olivier Sterkers; Daniele Bernardeschi; Renato Torres
Journal:  Eur Arch Otorhinolaryngol       Date:  2017-04-24       Impact factor: 2.503

3.  Orthopaedic tumors: What problems are we solving, and are universities and major medical centers doing enough?

Authors:  Mohamed Mediouni; Daniel R Schlatterer
Journal:  J Orthop       Date:  2017-05-04

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

5.  Accuracy and precision of manual segmentation of the maxillary sinus in MR images-a method study.

Authors:  Tobias N Andersen; Tron A Darvann; Shumei Murakami; Per Larsen; Yurie Senda; Anders Bilde; Christian V Buchwald; Sven Kreiborg
Journal:  Br J Radiol       Date:  2018-03-20       Impact factor: 3.039

6.  The effect of structured self-assessment in virtual reality simulation training of mastoidectomy.

Authors:  Steven Arild Wuyts Andersen; Mads Guldager; Peter Trier Mikkelsen; Mads Sølvsten Sørensen
Journal:  Eur Arch Otorhinolaryngol       Date:  2019-09-20       Impact factor: 2.503

7.  Multi-atlas segmentation of the facial nerve from clinical CT for virtual reality simulators.

Authors:  Bradley M Gare; Thomas Hudson; Seyed A Rohani; Daniel G Allen; Sumit K Agrawal; Hanif M Ladak
Journal:  Int J Comput Assist Radiol Surg       Date:  2019-11-23       Impact factor: 2.924

8.  The Usefulness of Reconstructed 3D Images in Surgical Planning for Cochlear Implantation in a Malformed Ear with an Abnormal Course of the Facial Nerve.

Authors:  Minoru Hara; Haruo Takahashi; Yukihiko Kanda
Journal:  Clin Exp Otorhinolaryngol       Date:  2012-04-30       Impact factor: 3.372

9.  Decentralized virtual reality mastoidectomy simulation training: a prospective, mixed-methods study.

Authors:  Martin Frendø; Ebbe Thingaard; Lars Konge; Mads Sølvsten Sørensen; Steven A W Andersen
Journal:  Eur Arch Otorhinolaryngol       Date:  2019-07-26       Impact factor: 2.503

10.  Freely-available, true-color volume rendering software and cryohistology data sets for virtual exploration of the temporal bone anatomy.

Authors:  Lüder Alexander Kahrs; Robert Frederick Labadie
Journal:  ORL J Otorhinolaryngol Relat Spec       Date:  2013-05-09       Impact factor: 1.538

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