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256层CT扫描仪中X射线散射的量级及影响

Magnitude and effects of x-ray scatter in a 256-slice CT scanner.

作者信息

Endo Masahiro, Mori Shinichiro, Tsunoo Takanori, Miyazaki Hiroaki

机构信息

National Institute of Radiological Sciences, Chiba 263-8555, Japan.

出版信息

Med Phys. 2006 Sep;33(9):3359-68. doi: 10.1118/1.2239366.

Abstract

We developed a prototype 256-slice CT scanner that employs continuous rotation of a cone-beam with a larger cone angle than conventional multidetector CTs (MDCT) to ensure a wide field of view. However, a larger cone angle may result in image deterioration due to increased x-ray scatter. Scattered radiation causes the detected signals to deviate from the true measurement of primary x-ray intensity and may result in artifacts (e.g., cupping and streak artifacts), quantitative inaccuracy in reconstructed CT number, and degradation of contrast-to-noise ratio (CNR). To reduce the effects of scatter, the 256-slice scanner incorporates an antiscatter collimator. Here, we estimated the magnitude of x-ray scatter in the prototype 256-slice CT scanner under clinical scan conditions and quantified the effects of this scatter on CT number accuracy, image noise, uniformity, and low contrast detectability. Although most experiments were performed with the antiscatter collimator, we also estimated the magnitude of x-ray scatter without the collimator to evaluate the scatter rejection efficiency of the collimator. The scatter-to-primary energy fluence ratio (SPR) without the collimator increased as cone angle increased, with estimated values of 49.7% for a 138 mm beam width with a phantom of 200 mm diameter, and 78.5% for a 320 mm diameter phantom. Estimated SPR was drastically decreased with the collimator, with an SPR reduction rate (ratio of SPR with and without the collimator) of 12.7% and 16.8% for the 200 and 320 mm diameter phantoms, respectively. The reduction in x-ray scatter by the collimator resulted in a considerable reduction in scatter effects. The measured uniformity was good and was independent of scatter amount. Although scatter still affected CT number accuracy, this could be corrected by rescaling. Further, although the CNR was decreased, in theory at least, the change was so subtle that it had no substantial effect on low-contrast detectability.

摘要

我们研发了一款256层CT扫描仪样机,该扫描仪采用锥束连续旋转,其锥角比传统多排探测器CT(MDCT)更大,以确保获得宽广的视野。然而,较大的锥角可能会因X射线散射增加而导致图像质量下降。散射辐射会使检测到的信号偏离对一次X射线强度的真实测量,可能会导致伪影(如杯状伪影和条纹伪影)、重建CT值的定量不准确以及对比度噪声比(CNR)降低。为了减少散射的影响,这款256层扫描仪配备了防散射准直器。在此,我们估计了临床扫描条件下该256层CT扫描仪样机中X射线散射的程度,并量化了这种散射对CT值准确性、图像噪声、均匀性和低对比度可探测性的影响。尽管大多数实验是在使用防散射准直器的情况下进行的,但我们也估计了不使用准直器时X射线散射的程度,以评估准直器的散射抑制效率。不使用准直器时,散射与一次能量注量比(SPR)随锥角增大而增加,对于直径200 mm的模体、138 mm束宽,估计值为49.7%;对于直径320 mm的模体,估计值为78.5%。使用准直器后,估计的SPR大幅降低,对于直径200和320 mm的模体,SPR降低率(使用和不使用准直器时SPR的比值)分别为12.7%和16.8%。准直器对X射线散射的减少导致散射效应显著降低。测量得到的均匀性良好,且与散射量无关。尽管散射仍会影响CT值准确性,但可通过重新缩放进行校正。此外,尽管CNR有所降低,但至少在理论上,这种变化非常细微,对低对比度可探测性没有实质性影响。

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