Title :
Volume rendering for high dynamic range displays
Author :
Ghosh, Abhijeet ; Trentacoste, Matthew ; Heidrich, Wolfgang
Author_Institution :
British Columbia Univ., Canada
Abstract :
Dynamic range restrictions of conventional displays limit the amount of detail that can be represented in volume rendering applications. However, high dynamic range displays with contrast ratios larger than 50,000 : 1 have recently been developed. We explore how these increased capabilities can be exploited for common volume rendering algorithms such as direct volume rendering and maximum projection rendering. In particular, we discuss distribution of intensities across the range of the display contrast and a mapping of the transfer function to a perceptually linear space over the range of intensities that the display can produce. This allows us to reserve several just noticeable difference steps of intensities for spatial context apart from clearly depicting the main regions of interest. We also propose generating automatic transfer functions for order independent operators through histogram-equalization of data in perceptually linear space.
Keywords :
computer displays; image representation; rendering (computer graphics); transfer functions; automatic transfer function; direct volume rendering; display contrast; high dynamic range display; histogram-equalization; just noticeable differences; linear space; maximum projection rendering; novel display technology; order independent operator; perceptually based rendering; Biomedical imaging; Carbon capture and storage; Computer displays; Computer graphics; Dynamic range; Hardware; Lighting; Rendering (computer graphics); Space technology; Transfer functions;
Conference_Titel :
Volume Graphics, 2005. Fourth International Workshop on
Print_ISBN :
3-905673-26-6
DOI :
10.1109/VG.2005.194102