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High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting

PURPOSE: Feasibility testing of a novel volume renders technology to display optical coherence tomography data (OCT) in a virtual reality (VR) environment. METHODS: A VR program was written in C++/OpenGL to import and display volumetric OCT data in real time with 180 frames per second using a high-e...

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Autores principales: Maloca, Peter M., de Carvalho, J. Emanuel Ramos, Heeren, Tjebo, Hasler, Pascal W., Mushtaq, Faisal, Mon-Williams, Mark, Scholl, Hendrik P.N., Balaskas, Konstantinos, Egan, Catherine, Tufail, Adnan, Witthauer, Lilian, Cattin, Philippe C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038772/
https://www.ncbi.nlm.nih.gov/pubmed/30002949
http://dx.doi.org/10.1167/tvst.7.4.2
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author Maloca, Peter M.
de Carvalho, J. Emanuel Ramos
Heeren, Tjebo
Hasler, Pascal W.
Mushtaq, Faisal
Mon-Williams, Mark
Scholl, Hendrik P.N.
Balaskas, Konstantinos
Egan, Catherine
Tufail, Adnan
Witthauer, Lilian
Cattin, Philippe C.
author_facet Maloca, Peter M.
de Carvalho, J. Emanuel Ramos
Heeren, Tjebo
Hasler, Pascal W.
Mushtaq, Faisal
Mon-Williams, Mark
Scholl, Hendrik P.N.
Balaskas, Konstantinos
Egan, Catherine
Tufail, Adnan
Witthauer, Lilian
Cattin, Philippe C.
author_sort Maloca, Peter M.
collection PubMed
description PURPOSE: Feasibility testing of a novel volume renders technology to display optical coherence tomography data (OCT) in a virtual reality (VR) environment. METHODS: A VR program was written in C++/OpenGL to import and display volumetric OCT data in real time with 180 frames per second using a high-end computer and a tethered head-mounted display. Following exposure, participants completed a Simulator Sickness Questionnaire (SSQ) to assess for nausea, disorientation, and oculomotor disturbances. A user evaluation study of this software was conducted to explore the potential utility of this application. RESULTS: Fifty-seven subjects completed the user testing (34 males and 23 females). Mean age was 48.5 years (range, 21–77 years). Mean acquired work experience of the 35 ophthalmologists (61.40%) included in the group was 15.46 years (range, 1–37 years). Twenty-nine participants were VR-naïve. The SSQ showed a mean total score of 5.8 (SD = 9.44) indicating that the system was well tolerated and produced minimal side effects. No difference was reported between VR-naïve participants and experienced users. Overall, immersed subjects reported an enjoyable VR-OCT presence effect. CONCLUSIONS: A usable and satisfying VR imaging technique was developed to display and interact with original OCT data. TRANSLATIONAL RELEVANCE: An advanced high-end VR image display method was successfully developed to provide new views and interactions in an ultra high-speed projected digital scenery using point-cloud OCT data. This represents the next generation of OCT image display technology and a new tool for patient engagement, medical education, professional training, and telecommunications.
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spelling pubmed-60387722018-07-12 High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting Maloca, Peter M. de Carvalho, J. Emanuel Ramos Heeren, Tjebo Hasler, Pascal W. Mushtaq, Faisal Mon-Williams, Mark Scholl, Hendrik P.N. Balaskas, Konstantinos Egan, Catherine Tufail, Adnan Witthauer, Lilian Cattin, Philippe C. Transl Vis Sci Technol Articles PURPOSE: Feasibility testing of a novel volume renders technology to display optical coherence tomography data (OCT) in a virtual reality (VR) environment. METHODS: A VR program was written in C++/OpenGL to import and display volumetric OCT data in real time with 180 frames per second using a high-end computer and a tethered head-mounted display. Following exposure, participants completed a Simulator Sickness Questionnaire (SSQ) to assess for nausea, disorientation, and oculomotor disturbances. A user evaluation study of this software was conducted to explore the potential utility of this application. RESULTS: Fifty-seven subjects completed the user testing (34 males and 23 females). Mean age was 48.5 years (range, 21–77 years). Mean acquired work experience of the 35 ophthalmologists (61.40%) included in the group was 15.46 years (range, 1–37 years). Twenty-nine participants were VR-naïve. The SSQ showed a mean total score of 5.8 (SD = 9.44) indicating that the system was well tolerated and produced minimal side effects. No difference was reported between VR-naïve participants and experienced users. Overall, immersed subjects reported an enjoyable VR-OCT presence effect. CONCLUSIONS: A usable and satisfying VR imaging technique was developed to display and interact with original OCT data. TRANSLATIONAL RELEVANCE: An advanced high-end VR image display method was successfully developed to provide new views and interactions in an ultra high-speed projected digital scenery using point-cloud OCT data. This represents the next generation of OCT image display technology and a new tool for patient engagement, medical education, professional training, and telecommunications. The Association for Research in Vision and Ophthalmology 2018-07-09 /pmc/articles/PMC6038772/ /pubmed/30002949 http://dx.doi.org/10.1167/tvst.7.4.2 Text en Copyright 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Articles
Maloca, Peter M.
de Carvalho, J. Emanuel Ramos
Heeren, Tjebo
Hasler, Pascal W.
Mushtaq, Faisal
Mon-Williams, Mark
Scholl, Hendrik P.N.
Balaskas, Konstantinos
Egan, Catherine
Tufail, Adnan
Witthauer, Lilian
Cattin, Philippe C.
High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title_full High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title_fullStr High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title_full_unstemmed High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title_short High-Performance Virtual Reality Volume Rendering of Original Optical Coherence Tomography Point-Cloud Data Enhanced With Real-Time Ray Casting
title_sort high-performance virtual reality volume rendering of original optical coherence tomography point-cloud data enhanced with real-time ray casting
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038772/
https://www.ncbi.nlm.nih.gov/pubmed/30002949
http://dx.doi.org/10.1167/tvst.7.4.2
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