Buehler Marc, Slagowski Jordan M, Mistretta Charles A, Strother Charles M, Speidel Michael A
Dept. of Medical Physics, University of Wisconsin, Madison, WI, USA.
Dept. of Radiology, University of Wisconsin, Madison, WI, USA.
Proc SPIE Int Soc Opt Eng. 2017 Feb;10132. doi: 10.1117/12.2255197. Epub 2017 Mar 9.
We investigate the use of tomosynthesis in 4D DSA to improve the accuracy of reconstructed vessel time-attenuation curves (TACs). It is hypothesized that a narrow-angle tomosynthesis dataset for each time point can be exploited to reduce artifacts caused by vessel overlap in individual projections. 4D DSA reconstructs time-resolved 3D angiographic volumes from a typical 3D DSA scan consisting of mask and iodine-enhanced C-arm rotations. Tomosynthesis projections are obtained either from a conventional C-arm rotation, or from an inverse geometry scanning-beam digital x-ray (SBDX) system. In the proposed method, rays of the tomosynthesis dataset which pass through multiple vessels can be ignored, allowing the non-overlapped rays to impart temporal information to the 4D DSA. The technique was tested in simulated scans of 2 mm diameter vessels separated by 2 to 5 cm, with TACs following either early or late enhancement. In standard 4D DSA, overlap artifacts were clearly present. Use of tomosynthesis projections in 4D DSA reduced TAC artifacts caused by vessel overlap, when a sufficient fraction of non-overlapped rays was available in each time frame. In cases where full overlap between vessels occurred, information could be recovered via a proposed image space interpolation technique. SBDX provides a tomosynthesis scan for each frame period in a rotational acquisition, whereas a standard C-arm geometry requires the grouping of multiple frames.
我们研究了断层合成技术在四维数字减影血管造影(4D DSA)中的应用,以提高重建血管时间-衰减曲线(TAC)的准确性。据推测,每个时间点的窄角断层合成数据集可用于减少个体投影中血管重叠引起的伪影。4D DSA从由蒙片和碘增强C形臂旋转组成的典型三维数字减影血管造影扫描中重建时间分辨的三维血管造影容积。断层合成投影可以从传统的C形臂旋转中获得,也可以从反几何扫描束数字X射线(SBDX)系统中获得。在所提出的方法中,可以忽略穿过多个血管的断层合成数据集的射线,从而使非重叠射线将时间信息传递给4D DSA。该技术在直径为2 mm、间距为2至5 cm的血管的模拟扫描中进行了测试,TAC呈现早期或晚期增强。在标准的4D DSA中,重叠伪影明显存在。当每个时间帧中有足够比例的非重叠射线时,在4D DSA中使用断层合成投影可减少血管重叠引起的TAC伪影。在血管完全重叠的情况下,可以通过提出的图像空间插值技术恢复信息。SBDX在旋转采集中为每个帧周期提供断层合成扫描,而标准的C形臂几何结构需要对多个帧进行分组。