CT/Micro-CT Laboratory, Department of Radiology, University of Iowa, 200 Hawkins Drive, Iowa City, Iowa 52242, USA.
J Xray Sci Technol. 2003 Jan 1;11(1):1-11.
The section sensitivity profile (SSP) was well understood in the case of single-row-detector spiral CT. With the introduction of multi-row-detector spiral CT and the transition into cone-beam spiral CT, a revisit to the SSP issue becomes necessary. In this paper, the SSP of multi-row-detector spiral CT is formulated for the half-scan interpolation method at any transverse position. Based on the SSP formula, numerical simulation is performed to quantify the characteristics of the SSP with the number of detector rows up to 40. It is shown that the SSP varies as a function of the pitch and the number of detector rows. Given an appropriate selection of the pitch and the number of detector rows, the SSP does not change very much over the field of view in terms of the mean, the slice thickness, and the skewness of the SSP. Although in general applications the SSP at the gantry iso-center can be used as the representative of the SSP family, for more accurate analyses the spatial variation of the SSP must be taken into account.
在单排探测器螺旋 CT 的情况下,节段灵敏度分布(SSP)得到了很好的理解。随着多排探测器螺旋 CT 的引入和锥形束螺旋 CT 的发展,有必要重新审视 SSP 问题。本文针对任意横向位置的半扫描内插法,给出了多排探测器螺旋 CT 的 SSP 公式。基于 SSP 公式,通过数值模拟对 SSP 的特征进行了量化,探测器排数达到 40。结果表明,SSP 随螺距和探测器排数的变化而变化。适当选择螺距和探测器排数,在视场范围内,SSP 的平均值、切片厚度和 SSP 的偏度变化不大。尽管在一般应用中,可将机架等中心的 SSP 用作 SSP 族的代表,但为了更精确的分析,必须考虑 SSP 的空间变化。