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Single- and dual-energy CT with monochromatic synchrotron x-rays

  • F. A. Dilmanian
  • , X. Y. Wu
  • , E. C. Parsons
  • , B. Ren
  • , J. Kress
  • , T. M. Button
  • , L. D. Chapman
  • , J. A. Coderre
  • , F. Giron
  • , D. Greenberg
  • , D. J. Krus
  • , Z. Liang
  • , S. Marcovici
  • , M. J. Petersen
  • , C. T. Roque
  • , M. Shleifer
  • , D. N. Slatkin
  • , W. C. Thomlinson
  • , K. Yamamoto
  • , Z. Zhong
  • Brookhaven National Laboratory
  • University of Würzburg
  • Illinois Institute of Technology
  • Stony Brook University
  • Harshaw Crystal Prod. Group
  • Analogic Corporation
  • Hamamatsu Photonics K.K.

Research output: Contribution to journalArticlepeer-review

102 Scopus citations

Abstract

We explored the potential for clinical research of computed tomography (CT) with monochomatic x-rays using the preclinical multiple energy computed tomography (MECT) system at the National Synchrotron Light Source. MECT has a fixed, horizontal fan beam with a subject apparatus rotating about a vertical axis; it will be used for imaging the human head and neck. Two CdWO4-photodiode array detectors with different spatial resolutions were used. A 10.5 cm diameter acrylic phantom was imaged with MECT at 43 keV and with a conventional CT (CCT) at 80 kVp: spatial resolution ~ 6.5 line pairs (lp)/cm for both; slice height, 2.6 mm for MECT against 3.0 mm for CCT; surface dose, 3.1 cGy for MECT against 2.0 cGy for CCT. The resultant image noise was 1.5 HU for MECT against 3 HU for CCT. Computer simulations of the same images with more precisely matched spatial resolution, slice height and dose indicated an image-noise ratio of 1.4:1.0 for CCT against MECT. A 13.5 cm diameter acrylic phantom imaged with MECT at ~ 0.1 keV above the iodine K edge and with CCT showed, for a 240 μg I ml-1 solution, an image contrast of 26 HU for MECT and 13 and 9 HU for the 80 and 100 kVp CCT, respectively. The corresponding numbers from computer simulation of the same images were 26, 12, and 9 HU, respectively. MECT's potential for use in clinical reseach is discussed.

Original languageEnglish
Pages (from-to)371-387
Number of pages17
JournalPhysics in Medicine and Biology
Volume42
Issue number2
DOIs
StatePublished - 1997

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