Title :
A constraint-based technique for haptic volume exploration
Author :
Ikits, Milan ; Brederson, J. Dean ; Hansen, Charles D. ; Johnson, Christopher R.
Author_Institution :
Sci. Comput. & Imaging Inst., Utah Univ., USA
Abstract :
We present a haptic rendering technique that uses directional constraints to facilitate enhanced exploration modes for volumetric datasets. The algorithm restricts user motion in certain directions by incrementally moving a proxy point along the axes of a local reference frame. Reaction forces are generated by a spring coupler between the proxy and the data probe, which can be tuned to the capabilities of the haptic interface. Secondary haptic effects including field forces, friction, and texture can be easily incorporated to convey information about additional characteristics of the data. We illustrate the technique with two examples: displaying fiber orientation in heart muscle layers and exploring diffusion tensor fiber tracts in brain white matter tissue. Initial evaluation of the approach indicates that haptic constraints provide an intuitive means or displaying directional information in volume data.
Keywords :
data visualisation; haptic interfaces; medical computing; transfer functions; virtual reality; brain white matter tissue; constraint-based technique; data probe; diffusion tensor fiber tracts; directional constraints; directional information; exploration modes; fiber orientation; field forces; haptic effects; haptic rendering; haptic volume exploration; heart muscle layers; human-computer interaction; immersive visualization; reaction forces; spring coupler; volumetric datasets; Computer graphics; Data visualization; Feedback; Friction; Haptic interfaces; Optical fiber couplers; Probes; Rendering (computer graphics); Scientific computing; Springs;
Conference_Titel :
Visualization, 2003. VIS 2003. IEEE
Conference_Location :
Seattle, WA, USA
Print_ISBN :
0-7803-8120-3
DOI :
10.1109/VISUAL.2003.1250381