Wang G, Vannier M W
Division of Radiology Research, Mallinckrodt Institute of Radiology, Washington University Medical School, Saint Louis, Missouri 63110.
Med Phys. 1994 Mar;21(3):429-33. doi: 10.1118/1.597306.
The primary advantage of helical computerized tomography (CT) is the capability of scanning a complete anatomical volume in a single breath hold. Due to the table motion and subsequent interpolation process, the slice sensitivity profile (SSP) in helical CT is worse than the response function of the detector array. In this paper, image longitudinal resolution in volumetric x-ray CT is analytically characterized, and a comparison made between conventional and helical CT. First, the SSPs are derived for both conventional and helical CT with the half-scan interpolation method under the condition that the table increment and detector collimation are the same. Then, the corresponding transfer functions are obtained for bandwidth determination, which directly describe the spatial resolution. Both one-tenth-cutoff and mean-square-root measures are used to quantify the bandwidth. Although it appears that broadening the SSP in helical CT could adversely affect longitudinal resolution, it is proved that for a given x-ray dose, helical CT allows substantially better longitudinal resolution than conventional CT due to its inherent retrospective reconstruction capability. To make full use of the potential of helical CT scan data, it is recommended that about five slices be reconstructed per table increment. Helical CT is superior in applications requiring a high longitudinal resolution.
螺旋计算机断层扫描(CT)的主要优势在于能够在一次屏气过程中扫描整个解剖区域。由于扫描床的移动及后续的插值处理过程,螺旋CT中的层厚灵敏度曲线(SSP)比探测器阵列的响应函数要差。本文对容积式X射线CT中的图像纵向分辨率进行了分析表征,并对传统CT和螺旋CT进行了比较。首先,在扫描床增量和探测器准直相同的条件下,采用半扫描插值法分别推导了传统CT和螺旋CT的SSP。然后,得到相应的传递函数以确定带宽,这些传递函数直接描述了空间分辨率。采用十分之一截止频率和均方根两种测量方法对带宽进行量化。尽管螺旋CT中SSP变宽似乎会对纵向分辨率产生不利影响,但事实证明,在给定的X射线剂量下,由于其固有的回顾性重建能力,螺旋CT的纵向分辨率比传统CT要好得多。为充分利用螺旋CT扫描数据的潜力,建议每增加一个扫描床增量重建约五幅图像。螺旋CT在需要高纵向分辨率的应用中具有优势。