2015/03/23 by Hidetake Hara, Hara, Hidetake, H. Muraishi +12
Engineering · Physics and Astronomy · #Advanced X-ray and CT Imaging #FOS: Physical sciences #Medical Physics (physics.med-ph) #Photoacoustic and Ultrasonic Imaging #Welding Techniques and Residual Stresses #physics.med-ph
paper · pdf · doi:10.48550/arxiv.1503.06728
14 pages, 9 figures, JKPS Special Edition Published
arxiv created 2015/03/23 · openalex publication_date 2015/03/23 · arxiv updated 2015/03/24 · openalex created_date 2019/06/27 · openalex updated_date 2026/07/28
We have recently developed a phantom that simulates acute ischemic stroke. We attempted to visualize acute-stage cerebral infarction by applying virtual monochromatic images to this phantom using dual-energy CT (DECT). Virtual monochromatic images were created using DECT from 40 to 100 keV at every 10 keV and from 60 to 80 keV at every 1 keV, under three energy conditions of tube voltages with thin (Sn) filters. Calculation of the CNR values allowed us to evaluate the visualization of acute-stage cerebral infarction. The CNR value of a virtual monochromatic image was the highest at 68 keV under 80 kV / Sn 140 kV, at 72 keV under 100 kV / Sn 140 kV, and at 67 keV under 140 kV / 80 kV. The CNR values of virtual monochromatic images between 65 and 75 keV were significantly higher than those obtained for all other created energy images. Therefore, optimal conditions for visualizing acute ischemic stroke were achievable.