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  1. IEEE Symposium on Research Frontiers in Virtual Reality.
  2. Proceedings of 1993 IEEE Research Properties in Virtual Reality Symposium
  3. Volume haptization
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Proceedings of 1993 IEEE Research Properties in Virtual Reality Symposium
Proceedings of 1993 IEEE Research Properties in Virtual Reality Symposium
VR as a forcing function: Software implications of a new paradigm
DIVER: A Distributed Virtual Environment Research platform
Volume haptization
Interactive collision detection
Calibration and evaluation of virtual environment displays
A user study comparing head-mounted and stationary displays
Perceptual decomposition of virtual haptic surfaces
Understanding synthetic experience must begin with the analysis of ordinary perceptual experience
Scientists in wonderland: A report on visualization applications in the CAVE virtual reality environment
Applying virtual reality in education: A prototypical virtual physics laboratory
On recording virtual environments
Auditory distance perception by translating observers
Is "presence" a training issue?
Virtual gain for audio windows
What you see is what you hear-Acoustics applied in virtual worlds
X11 in virtual environments
An eye tracking computer user interface
Robots and simulated environments-first steps towards virtual robotics
Cosmic Explorer: A virtual reality environment for exploring cosmic data
A virtual environment architecture

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Volume haptization

Content Provider IEEE Xplore Digital Library
Author Iwata, H. Noma, H.
Copyright Year 1993
Description Author affiliation: Inst. of Eng. Mech., Tsukuba Univ., Japan (Iwata, H.; Noma, H.)
Abstract The authors describe haptic representation of volume data. Volume visualization is a powerful tool in the field of scientific visualization. However, visual representation of full three-dimensional volume is hard to comprehend because of occlusion. Higher-dimensional and multi-parameter data sets are also difficult to present by visual image. The authors propose methods for presentation of volume data by force sensation. A six degree-of-freedom force reflective master manipulator is used for haptization. The manipulator is combined to real-time visual image of volume data. Methods of haptic representation of scalar, vector, and tensor data are discussed. Recognition performance tests of scalar and multiparameter volume data are examined.<>
Starting Page 16
Ending Page 23
File Size 608432
Page Count 8
File Format PDF
ISBN 0818649100
DOI 10.1109/VRAIS.1993.378268
Language English
Publisher Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Publisher Date 1993-10-25
Publisher Place USA
Access Restriction Subscribed
Rights Holder Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subject Keyword Virtual reality User interfaces Manipulators Scientific visualization
Content Type Text
Resource Type Article
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