CivaTech Oncology, Durham, NC, USA.
Department of Radiology, Multi Modality Imaging Lab, Duke University Medical Center, Durham, NC, USA.
J Xray Sci Technol. 2018;26(4):535-551. doi: 10.3233/XST-17350.
Hounsfield Units (HU) are used clinically in differentiating tissue types in a reconstructed CT image, and therefore the HU accuracy of a system is important, especially when using multiple sources, novel detector and non-traditional trajectories. Dedicated clinical breast CT (BCT) systems therefore should be similarly evaluated. In this study, uniform cylindrical phantoms filled with various uniform density fluids were used to characterize differences in HU values between simple circular and complex 3D (saddle) orbits. Based on ACR recommendations, the HU accuracy, center-to-edge variability within a slice, and overall variability within the reconstructed volume were characterized for simple and complex acquisitions possible on a single versatile BCT system. Results illustrate the statistically significantly better performance of the saddle orbit, especially close to the chest and nipple regions of what would clinically be a pendant breast volume. The incomplete cone beam acquisition of a simple circular orbit causes shading artifacts near the nipple, due to insufficient sampling, rendering a major portion of the scanned phantom unusable, whereas the saddle orbit performs exceptionally well and provides a tighter distribution of HU values throughout the reconstructed volumes. This study further establishes the advantages of using 3D acquisition trajectories for breast CT as well as other applications by demonstrating the robustness of HU values throughout large reconstructed volumes.
亨氏单位(HU)用于在重建的 CT 图像中区分组织类型,因此系统的 HU 准确性很重要,尤其是在使用多个源、新型探测器和非传统轨迹时。因此,专门的临床乳房 CT(BCT)系统也应该进行类似的评估。在这项研究中,使用填充各种均匀密度液体的均匀圆柱形体模来描述简单圆形和复杂 3D(鞍形)轨道之间 HU 值的差异。根据 ACR 建议,对在单个多功能 BCT 系统上进行的简单和复杂采集的 HU 准确性、切片内的中心到边缘变化以及整个重建体积内的整体变化进行了特征描述。结果表明,鞍形轨道的性能明显更好,尤其是在接近临床悬挂乳房体积的乳房和乳头区域。由于采样不足,简单圆形轨道的不完全锥形束采集在乳头附近会产生阴影伪影,导致扫描体模的大部分无法使用,而鞍形轨道则表现出色,并在整个重建体积中提供了更紧密的 HU 值分布。本研究通过证明在大的重建体积中 HU 值的稳健性,进一步确立了在乳房 CT 以及其他应用中使用 3D 采集轨迹的优势。