Dual-energy CT-based monochromatic imaging

We summarize how virtual monochromatic images are synthesized from dual-energy CT using image-domain and projection-domain methods. The quality of virtual monochromatic images is compared with that of polychromatic single-energy images acquired at different tube potentials and the same radiation dos...

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Veröffentlicht in:American journal of roentgenology (1976) 2012-11, Vol.199 (5 Suppl), p.S9-S15
Hauptverfasser: Yu, Lifeng, Leng, Shuai, McCollough, Cynthia H
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Sprache:eng
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Zusammenfassung:We summarize how virtual monochromatic images are synthesized from dual-energy CT using image-domain and projection-domain methods. The quality of virtual monochromatic images is compared with that of polychromatic single-energy images acquired at different tube potentials and the same radiation dose. Clinical applications of dual-energy CT-based virtual monochromatic imaging are reviewed, including beam-hardening correction, contrast and noise optimization, metal artifact reduction, and material differentiation. Virtual monochromatic images synthesized from dual-energy CT data have the potential to reduce beam-hardening artifacts and to provide quantitative measurements. If there is no desire to obtain material-specific information or to correct for metal or beam-hardening artifacts from the dual-energy data, however, it is better to perform a conventional single-energy scan at the optimal tube potential.
ISSN:0361-803X
1546-3141
DOI:10.2214/AJR.12.9121