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3D imaging spectroscopy for measuring hyperspectral patterns on solid objects

Publication ,  Journal Article
Kim, MH; Rushmeier, H; Dorsey, J; Harvey, TA; Prum, RO; Kittle, DS; Brady, DJ
Published in: ACM Transactions on Graphics
July 1, 2012

Sophisticated methods for true spectral rendering have been developed in computer graphics to produce highly accurate images. In addition to traditional applications in visualizing appearance, such methods have potential applications in many areas of scientific study. In particular, we are motivated by the application of studying avian vision and appearance. An obstacle to using graphics in this application is the lack of reliable input data. We introduce an end-toend measurement system for capturing spectral data on 3D objects. We present the modification of a recently developed hyperspectral imager to make it suitable for acquiring such data in a wide spectral range at high spectral and spatial resolution. We capture four megapixel images, with data at each pixel from the near-ultraviolet (359 nm) to near-infrared (1,003 nm) at 12 nm spectral resolution. We fully characterize the imaging system, and document its accuracy. This imager is integrated into a 3D scanning system to enable the measurement of the diffuse spectral reflectance and fluorescence of specimens. We demonstrate the use of this measurement system in the study of the interplay between the visual capabilities and appearance of birds. We show further the use of the system in gaining insight into artifacts from geology and cultural heritage. © 2012 ACM 0730-0301/2012/08-ART38.

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Published In

ACM Transactions on Graphics

DOI

EISSN

1557-7368

ISSN

0730-0301

Publication Date

July 1, 2012

Volume

31

Issue

4

Related Subject Headings

  • Software Engineering
  • 4607 Graphics, augmented reality and games
  • 0806 Information Systems
  • 0801 Artificial Intelligence and Image Processing
 

Citation

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Kim, M. H., Rushmeier, H., Dorsey, J., Harvey, T. A., Prum, R. O., Kittle, D. S., & Brady, D. J. (2012). 3D imaging spectroscopy for measuring hyperspectral patterns on solid objects. ACM Transactions on Graphics, 31(4). https://doi.org/10.1145/2185520.2185534
Kim, M. H., H. Rushmeier, J. Dorsey, T. A. Harvey, R. O. Prum, D. S. Kittle, and D. J. Brady. “3D imaging spectroscopy for measuring hyperspectral patterns on solid objects.” ACM Transactions on Graphics 31, no. 4 (July 1, 2012). https://doi.org/10.1145/2185520.2185534.
Kim MH, Rushmeier H, Dorsey J, Harvey TA, Prum RO, Kittle DS, et al. 3D imaging spectroscopy for measuring hyperspectral patterns on solid objects. ACM Transactions on Graphics. 2012 Jul 1;31(4).
Kim, M. H., et al. “3D imaging spectroscopy for measuring hyperspectral patterns on solid objects.” ACM Transactions on Graphics, vol. 31, no. 4, July 2012. Scopus, doi:10.1145/2185520.2185534.
Kim MH, Rushmeier H, Dorsey J, Harvey TA, Prum RO, Kittle DS, Brady DJ. 3D imaging spectroscopy for measuring hyperspectral patterns on solid objects. ACM Transactions on Graphics. 2012 Jul 1;31(4).

Published In

ACM Transactions on Graphics

DOI

EISSN

1557-7368

ISSN

0730-0301

Publication Date

July 1, 2012

Volume

31

Issue

4

Related Subject Headings

  • Software Engineering
  • 4607 Graphics, augmented reality and games
  • 0806 Information Systems
  • 0801 Artificial Intelligence and Image Processing