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Journal Article

Citation

Munjuluri B, Huebschman ML, Garner HR. Appl. Opt. 2005; 44(24): 5076-5085.

Affiliation

Eugene McDermott Center for Human Growth and Development, The University of Texas Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, Texas 75390-8591, USA. bala.munjuluri@utsouthwestern.edu

Copyright

(Copyright © 2005, Optical Society of America)

DOI

unavailable

PMID

16121792

Abstract

We have demonstrated that holograms incorporating changes in three-dimensional (3D) scenes can be recalculated in real time to present dynamic updates on information displays. This approach displays 3D information in a compatible format for fast and reliable interpretation of changes in the 3D scenes. The rapid-update algorithm has been demonstrated by real-time computation and transcription of the holograms to our digital micromirror device hologram projection system for visual validation of the reconstruction. The reported algorithm enables full parallax 1024 x 768 pixel holograms of 3D scenes to be updated at a rate of 0.8 s with a 1.8 GHz personal computer. Volumetric information displays that can enhance reliable data assimilation and decrease reaction times for applications such as air-traffic control, cockpit heads-up displays, mission crew stations, and undersea navigation can benefit from this research.


Language: en

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