Hoogenboom T C H, van Beurden R M J, van Teylingen B, Schenk B, Willems P W A
Division of Medical Technology, Inholland University of Applied Sciences; Haarlem, The Netherlands.
Interv Neuroradiol. 2012 Dec;18(4):377-9. doi: 10.1177/159101991201800402. Epub 2012 Dec 3.
Time resolved whole brain CT angiography (4D-CTA) is a novel imaging technology providing information regarding blood flow. One of the factors that influence the diagnostic value of this examination is the temporal resolution, which is affected by the gantry rotation speed during acquisition and the reconstruction interval during post-processing. Post-processing determines the time spacing between two reconstructed volumes and, unlike rotation speed, does not affect radiation burden. The data sets of six patients who underwent a cranial 4D-CTA were used for this study. Raw data was acquired using a 320-slice scanner with a rotation speed of 2 Hz. The arterial to venous passage of an intravenous contrast bolus was captured during a 15 s continuous scan. The raw data was reconstructed using four different reconstruction-intervals: 0.2, 0.3, 0.5 and 1.0 s. The results were rated by two observers using a standardized score sheet. The appearance of each lesion was rated correctly in all readings. Scoring for quality of temporal resolution revealed a stepwise improvement from the 1.0 s interval to the 0.3 s interval, while no discernable improvement was noted between the 0.3 s and 0.2 s interval. An increase in temporal resolution may improve the diagnostic quality of cranial 4D-CTA. Using a rotation speed of 0.5 s, the optimal reconstruction interval appears to be 0.3 s, beyond which, changes can no longer be discerned.
时间分辨全脑CT血管造影(4D-CTA)是一种提供血流信息的新型成像技术。影响该检查诊断价值的因素之一是时间分辨率,它受采集期间的机架旋转速度和后处理期间的重建间隔影响。后处理决定了两个重建容积之间的时间间隔,与旋转速度不同,它不会影响辐射剂量。本研究使用了6例接受头颅4D-CTA检查患者的数据集。使用转速为2Hz的320层扫描仪采集原始数据。在15秒的连续扫描期间捕获静脉注射对比剂团块的动静脉通过情况。使用四种不同的重建间隔(0.2、0.3、0.5和1.0秒)对原始数据进行重建。两名观察者使用标准化评分表对结果进行评分。在所有读数中,每个病变的外观均被正确评分。时间分辨率质量评分显示从1.0秒间隔到0.3秒间隔有逐步改善,而在0.3秒和0.2秒间隔之间未观察到明显改善。时间分辨率的提高可能会改善头颅4D-CTA的诊断质量。使用0.5秒的旋转速度,最佳重建间隔似乎是0.3秒,超过此间隔,变化不再明显。