Flohr Thomas G, McCollough Cynthia H, Bruder Herbert, Petersilka Martin, Gruber Klaus, Süss Christoph, Grasruck Michael, Stierstorfer Karl, Krauss Bernhard, Raupach Rainer, Primak Andrew N, Küttner Axel, Achenbach Stefan, Becker Christoph, Kopp Andreas, Ohnesorge Bernd M
Siemens Medical Solutions, Computed Tomography CTE PA, Siemensstr. 1, 91301, Forchheim, Germany.
Eur Radiol. 2006 Feb;16(2):256-68. doi: 10.1007/s00330-005-2919-2. Epub 2005 Dec 10.
We present a performance evaluation of a recently introduced dual-source computed tomography (DSCT) system equipped with two X-ray tubes and two corresponding detectors, mounted onto the rotating gantry with an angular offset of 90 degrees . We introduce the system concept and derive its consequences and potential benefits for electrocardiograph [corrected] (ECG)-controlled cardiac CT and for general radiology applications. We evaluate both temporal and spatial resolution by means of phantom scans. We present first patient scans to illustrate the performance of DSCT for ECG-gated cardiac imaging, and we demonstrate first results using a dual-energy acquisition mode. Using ECG-gated single-segment reconstruction, the DSCT system provides 83 ms temporal resolution independent of the patient's heart rate for coronary CT angiography (CTA) and evaluation of basic functional parameters. With dual-segment reconstruction, the mean temporal resolution is 60 ms (minimum temporal resolution 42 ms) for advanced functional evaluation. The z-flying focal spot technique implemented in the evaluated DSCT system allows 0.4 mm cylinders to be resolved at all heart rates. First clinical experience shows a considerably increased robustness for the imaging of patients with high heart rates. As a potential application of the dual-energy acquisition mode, the automatic separation of bones and iodine-filled vessels is demonstrated.
我们展示了对最近推出的双源计算机断层扫描(DSCT)系统的性能评估,该系统配备了两个X射线管和两个相应的探测器,安装在旋转机架上,角度偏移为90度。我们介绍了系统概念,并推导了其对心电图[校正](ECG)控制的心脏CT以及一般放射学应用的影响和潜在益处。我们通过体模扫描评估时间和空间分辨率。我们展示了首批患者扫描结果,以说明DSCT在ECG门控心脏成像中的性能,并展示了使用双能量采集模式的初步结果。使用ECG门控单段重建,DSCT系统为冠状动脉CT血管造影(CTA)和基本功能参数评估提供了83毫秒的时间分辨率,与患者心率无关。采用双段重建时,用于高级功能评估的平均时间分辨率为60毫秒(最小时间分辨率42毫秒)。在评估的DSCT系统中实施的z飞行焦点技术允许在所有心率下分辨0.4毫米的圆柱体。初步临床经验表明,对于高心率患者的成像,其稳健性有了显著提高。作为双能量采集模式的潜在应用,展示了骨骼和碘填充血管的自动分离。