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Title: Optimized radiographic spectra for small animal digital subtraction angiography

Journal Article · · Medical Physics
DOI:https://doi.org/10.1118/1.2356646· OSTI ID:20853711
; ; ; ;  [1]
  1. Center for In Vivo Microscopy, Box 3302, Duke University Medical Center, Durham, North Carolina 27710 (United States)

The increasing use of small animals in basic research has spurred interest in new imaging methodologies. Digital subtraction angiography (DSA) offers a particularly appealing approach to functional imaging in the small animal. This study examines the optimal x-ray, molybdenum (Mo) or tungsten (W) target sources, and technique to produce the highest quality small animal functional subtraction angiograms in terms of contrast and signal-difference-to-noise ratio squared (SdNR{sup 2}). Two limiting conditions were considered--normalization with respect to dose and normalization against tube loading. Image contrast and SdNR{sup 2} were simulated using an established x-ray model. DSA images of live rats were taken at two representative tube potentials for the W and Mo sources. Results show that for small animal DSA, the Mo source provides better contrast. However, with digital detectors, SdNR{sup 2} is the more relevant figure of merit. The W source operated at kVps>60 achieved a higher SdNR{sup 2}. The highest SdNR{sup 2} was obtained at voltages above 90 kVp. However, operation at the higher potential results in significantly greater dose and tube load and reduced contrast quantization. A reasonable tradeoff can be achieved at tube potentials at the beginning of the performance plateau, around 70 kVp, where the relative gain in SdNR{sup 2} is the greatest.

OSTI ID:
20853711
Journal Information:
Medical Physics, Vol. 33, Issue 11; Other Information: DOI: 10.1118/1.2356646; (c) 2006 American Association of Physicists in Medicine; Country of input: International Atomic Energy Agency (IAEA); ISSN 0094-2405
Country of Publication:
United States
Language:
English