Puett Connor, Inscoe Christina, Lee Yueh Z, Zhou Otto, Lu Jianping
University of North Carolina at Chapel Hill, UNC/NCSU Joint Department of Biomedical Engineering, Chapel Hill, North Carolina, United States.
University of North Carolina at Chapel Hill, Department of Physics and Astronomy, Chapel Hill, North Carolina, United States.
J Med Imaging (Bellingham). 2018 Jan;5(1):013502. doi: 10.1117/1.JMI.5.1.013502. Epub 2018 Feb 1.
Stationary digital breast tomosynthesis (sDBT) is an emerging technology in which the single rotating x-ray tube is replaced by a fixed array of multiple carbon nanotube-enabled sources, providing a higher spatial and temporal resolution. As such, sDBT offers a promising platform for contrast-enhanced (CE) imaging. However, given the minimal enhancement above background with standard operational tube settings and iodine dosing, CE breast imaging requires additional acquisition steps to isolate the iodine signal, using either temporal or dual energy subtraction (TS or DES) protocols. Also, correcting for factors that limit contrast is critical, and scatter and noise pose unique challenges during tomosynthesis. This phantom-based study of CE sDBT compared different postacquisition scatter correction approaches on the quality of the reconstructed image slices. Beam-pass collimation was used to sample scatter indirectly, from which an interpolated scatter map was obtained for each projection image. Scatter-corrected projections provided the information for reconstruction. Comparison between the application of different scatter maps demonstrated the significant effect that processing has on the contrast-to-noise ratio and feature detectability ([Formula: see text]) in the final displayed images and emphasized the critical importance of scatter correction during DES.
静态数字乳腺断层合成(sDBT)是一项新兴技术,其中单个旋转X射线管被多个基于碳纳米管的固定源阵列所取代,从而提供更高的空间和时间分辨率。因此,sDBT为对比增强(CE)成像提供了一个有前景的平台。然而,鉴于在标准操作管设置和碘剂量下背景以上的增强极小,CE乳腺成像需要额外的采集步骤来分离碘信号,可使用时间或双能减法(TS或DES)协议。此外,校正限制对比度的因素至关重要,并且在断层合成过程中散射和噪声带来了独特的挑战。这项基于体模的CE sDBT研究比较了不同的采集后散射校正方法对重建图像切片质量的影响。采用束流通过准直间接采样散射,由此为每个投影图像获得一个插值散射图。经散射校正的投影为重建提供信息。不同散射图应用之间的比较表明,处理对最终显示图像中的对比度噪声比和特征可检测性([公式:见正文])有显著影响,并强调了DES期间散射校正的至关重要性。