Smyth Jm, Sutton Dg, Houston Jg
Department of Medical Physics, Ninewells Hospital and Medical School, Dundee, Scotland.
Biomed Imaging Interv J. 2006 Oct;2(4):e48. doi: 10.2349/biij.2.4.e48. Epub 2006 Oct 1.
The development of flat panel detector technology has resulted in renewed interest in the possibility of generating CT-like images from rotational angiographic acquisitions. At least two commercial products now use cone beam reconstruction software in conjunction with flat panel detectors to produce such images. The purpose of the work presented here is to report on image quality obtained from one such system in objective and subjective terms and to compare it with the quality of images obtained from a modern multi-detector CT scanner.
The Image quality was assessed using a CATPHAN 500 model and an AAPM CT Performance Phantom model. Image noise, CT number accuracy, CT number consistency, Low Contrast Resolution, surface dose and Modulation Transfer Function were assessed for the flat panel detector and compared with results obtained from a 4 slice CT scanner.
As expected image quality obtained from the CT scanner was much better than from the flat panel detector. Low contrast resolution was much worse and the surface dose was higher for the flat panel detector than the CT scanner. There was an inaccuracy in CT number determination and the noise was greater by a factor of two or three. Limiting resolution was better on images from the CT scanner.
The poor low contrast resolution from flat panel detector was expected given the expected resolution of ±10 Hounsfield Units. These systems should not be considered as diagnostic CT scanners. However, the remaining performance figures indicate that the CT-like images obtained from this type of equipment are of sufficient quality for at least some clinical applications, such as detection of brain haemorrhages in the vascular suite.
平板探测器技术的发展使得人们重新关注从旋转血管造影采集中生成类似CT图像的可能性。现在至少有两种商业产品将锥束重建软件与平板探测器结合使用来生成此类图像。本文介绍的这项工作的目的是从客观和主观方面报告从这样一个系统获得的图像质量,并将其与从现代多探测器CT扫描仪获得的图像质量进行比较。
使用CATPHAN 500模型和AAPM CT性能模体模型评估图像质量。评估平板探测器的图像噪声、CT值准确性、CT值一致性、低对比度分辨率、表面剂量和调制传递函数,并与从4层CT扫描仪获得的结果进行比较。
正如预期的那样,从CT扫描仪获得的图像质量比平板探测器的要好得多。平板探测器的低对比度分辨率要差得多,表面剂量也比CT扫描仪高。CT值测定存在不准确之处,噪声大两到三倍。CT扫描仪图像的极限分辨率更好。
考虑到预期分辨率为±10亨氏单位,平板探测器的低对比度分辨率较差是意料之中的。这些系统不应被视为诊断CT扫描仪。然而,其余性能数据表明,从这类设备获得的类似CT图像的质量至少对于某些临床应用来说是足够的,例如检测血管系统中的脑内出血。