Behrenbeck T, Kinsey J H, Harris L D, Robb R A, Ritman E L
J Comput Assist Tomogr. 1982 Dec;6(6):1138-47. doi: 10.1097/00004728-198212000-00015.
Spatial, density, and temporal resolution of the dynamic spatial reconstructor (DSR), a multiple X-ray source, high speed, computed tomography scanning system, are evaluated. Hole-pair resolution was evaluated in a stationary phantom surrounded with air, 15 cm of water, or 20 cm of water. Temporal resolution was evaluated by rotation of one of the resolution phantoms during the scan, and with a balloon inflated to a known volume and at a known rate to approximate a typical left ventricular chamber volume and filling rate. These studies confirmed that the spatial resolution is essentially the same in the transverse and axial directions, and that retrospective manipulation of the image data is important for maximization of spatial and density resolution in any structure under examination by obtaining a tradeoff with partial-volume and motion-blurring effects. Maximum spatial resolution in the scanned volume was shown, under ideal conditions, to be greater than five hole pairs per centimeter. Under conditions of intravenous injection of contrast agent, the resolution of blood vessels in an experimental animal approximately 25 kg in weight is expected to be on the order of three hole pairs per centimeter; and in an adult human weighting approximately 60 kg, a resolution of about two hole pairs per centimeter is to be expected.
对动态空间重建仪(DSR)——一种多X射线源、高速计算机断层扫描系统的空间、密度和时间分辨率进行了评估。在被空气、15厘米厚水或20厘米厚水包围的静止模体中评估空穴对分辨率。通过在扫描过程中旋转其中一个分辨率模体,以及用一个以已知速率充气至已知体积的球囊来近似典型左心室腔体积和充盈速率来评估时间分辨率。这些研究证实,横向和轴向的空间分辨率基本相同,并且通过与部分容积效应和运动模糊效应进行权衡,对图像数据进行回顾性处理对于在任何被检查结构中最大化空间和密度分辨率很重要。在理想条件下,扫描体积内的最大空间分辨率显示大于每厘米五个空穴对。在静脉注射造影剂的情况下,预计体重约25千克的实验动物中血管的分辨率约为每厘米三个空穴对;而在体重约60千克的成年人中,预计分辨率约为每厘米两个空穴对。