Enabling scientific workflows in virtual reality
Oliver Kreylos, Gerald Bawden, Tony Bernardin, Magali I. Billen, Eric S. Cowgill, Ryan D. Gold, Bernd Hamann, Margarete Jadamec, Louise H. Kellogg, Oliver G. Staadt, Dawn Y. Sumner
Proceedings of the 2006 ACM international conference on Virtual reality continuum and its applications, 2006, pp. 155--162.
Abstract: To advance research and improve the scientific return on data collection and interpretation efforts in the geosciences, we have developed methods of interactive visualization, with a special focus on immersive virtual reality (VR) environments. Earth sciences employ a strongly visual approach to the measurement and analysis of geologic data due to the spatial and temporal scales over which such data ranges. As observations and simulations increase in size and complexity, the Earth sciences are challenged to manage and interpret increasing amounts of data. Reaping the full intellectual benefits of immersive VR requires us to tailor exploratory approaches to scientific problems. These applications build on the visualization method's strengths, using both 3D perception and interaction with data and models, to take advantage of the skills and training of the geological scientists exploring their data in the VR environment. This interactive approach has enabled us to develop a suite of tools that are adaptable to a range of problems in the geosciences and beyond.
@inproceedings{10.1145-1128923.1128948,
author = {Oliver Kreylos and Gerald Bawden and Tony Bernardin and Magali I. Billen and Eric S. Cowgill and Ryan D. Gold and Bernd Hamann and Margarete Jadamec and Louise H. Kellogg and Oliver G. Staadt and Dawn Y. Sumner},
title = {Enabling scientific workflows in virtual reality},
booktitle = {Proceedings of the 2006 ACM international conference on Virtual reality continuum and its applications},
pages = {155--162},
year = {2006},
}
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