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A volumetric approach to virtual simulation of functional endoscopic sinus surgery.

Identifieur interne : 002045 ( PubMed/Corpus ); précédent : 002044; suivant : 002046

A 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. Martin

Source :

RBID : pubmed:10173055

English descriptors

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:10173055

Le document en format XML

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<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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