A volumetric approach to virtual simulation of functional endoscopic sinus surgery.
Identifieur interne : 002045 ( PubMed/Corpus ); précédent : 002044; suivant : 002046A volumetric approach to virtual simulation of functional endoscopic sinus surgery.
Auteurs : G J Wiet ; R. Yagel ; D. Stredney ; P. Schmalbrock ; D J Sessanna ; Y. Kurzion ; L. Rosenberg ; M. Levin ; K. MartinSource :
- Studies in health technology and informatics [ 0926-9630 ] ; 1997.
English descriptors
- KwdEn :
- MESH :
- education : General Surgery.
- methods : Endoscopy.
- pathology : Sinusitis.
- surgery : Sinusitis.
- Computer Simulation, Humans, Image Enhancement, User-Computer Interface.
Abstract
Advanced display technologies have made the virtual exploration of relatively complex models feasible in many applications. Unfortunately, only a few human interfaces allow natural interaction with the environment. Moreover, in surgical applications, such realistic interaction requires real-time rendering of volumetric data-placing an overwhelming performance burden on the system. We report on a collaboration of an interdisciplinary group developing a virtual reality system that provides intuitive interaction with volume data by employing real-time volume rendering and force feedback (haptic) sensations. We describe our rendering methods and the haptic devices and explain its utility of this system in the real-world application of Endoscopic Sinus Surgery (ESS) simulation.
PubMed: 10173055
Links to Exploration step
pubmed:10173055Le document en format XML
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<author><name sortKey="Wiet, G J" sort="Wiet, G J" uniqKey="Wiet G" first="G J" last="Wiet">G J Wiet</name>
<affiliation><nlm:affiliation>Department of Otolaryngology, Ohio State University Hospitals, Columbus, USA.</nlm:affiliation>
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<author><name sortKey="Yagel, R" sort="Yagel, R" uniqKey="Yagel R" first="R" last="Yagel">R. Yagel</name>
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<author><name sortKey="Stredney, D" sort="Stredney, D" uniqKey="Stredney D" first="D" last="Stredney">D. Stredney</name>
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<author><name sortKey="Schmalbrock, P" sort="Schmalbrock, P" uniqKey="Schmalbrock P" first="P" last="Schmalbrock">P. Schmalbrock</name>
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<author><name sortKey="Sessanna, D J" sort="Sessanna, D J" uniqKey="Sessanna D" first="D J" last="Sessanna">D J Sessanna</name>
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<author><name sortKey="Kurzion, Y" sort="Kurzion, Y" uniqKey="Kurzion Y" first="Y" last="Kurzion">Y. Kurzion</name>
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<author><name sortKey="Rosenberg, L" sort="Rosenberg, L" uniqKey="Rosenberg L" first="L" last="Rosenberg">L. Rosenberg</name>
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<author><name sortKey="Levin, M" sort="Levin, M" uniqKey="Levin M" first="M" last="Levin">M. Levin</name>
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<author><name sortKey="Martin, K" sort="Martin, K" uniqKey="Martin K" first="K" last="Martin">K. Martin</name>
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<author><name sortKey="Rosenberg, L" sort="Rosenberg, L" uniqKey="Rosenberg L" first="L" last="Rosenberg">L. Rosenberg</name>
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<author><name sortKey="Levin, M" sort="Levin, M" uniqKey="Levin M" first="M" last="Levin">M. Levin</name>
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<series><title level="j">Studies in health technology and informatics</title>
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<term>Sinusitis (surgery)</term>
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<front><div type="abstract" xml:lang="en">Advanced display technologies have made the virtual exploration of relatively complex models feasible in many applications. Unfortunately, only a few human interfaces allow natural interaction with the environment. Moreover, in surgical applications, such realistic interaction requires real-time rendering of volumetric data-placing an overwhelming performance burden on the system. We report on a collaboration of an interdisciplinary group developing a virtual reality system that provides intuitive interaction with volume data by employing real-time volume rendering and force feedback (haptic) sensations. We describe our rendering methods and the haptic devices and explain its utility of this system in the real-world application of Endoscopic Sinus Surgery (ESS) simulation.</div>
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<Abstract><AbstractText>Advanced display technologies have made the virtual exploration of relatively complex models feasible in many applications. Unfortunately, only a few human interfaces allow natural interaction with the environment. Moreover, in surgical applications, such realistic interaction requires real-time rendering of volumetric data-placing an overwhelming performance burden on the system. We report on a collaboration of an interdisciplinary group developing a virtual reality system that provides intuitive interaction with volume data by employing real-time volume rendering and force feedback (haptic) sensations. We describe our rendering methods and the haptic devices and explain its utility of this system in the real-world application of Endoscopic Sinus Surgery (ESS) simulation.</AbstractText>
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