Geijer H, Norrman E, Persliden J
Department of Radiology, Orebro University Hospital, Orebro, Sweden.
Br J Radiol. 2009 Jan;82(973):62-8. doi: 10.1259/bjr/56572915.
The purpose of this study was to find the optimal settings for lumbar spine radiography with a flat-panel detector. A CDRAD contrast-detail phantom was imaged at various tube potentials, system speeds and filtration settings. Factorial experiments yielded a range of optimized exposure settings, which were submitted to visual grading analysis with images of an Alderson phantom. The first optimized settings involved a system speed increase from 400 to 800. For anteroposterior projection, the optimal tube potential was reduced from the default of 77 kV to 60 kV to give the best image quality without increasing the effective dose, or to 66 kV to give the lowest dose without reducing image quality. For lateral projection, the tube potential was similarly reduced from the default of 90 kV to 70 kV or 77 kV. Visual grading analysis confirmed the results, with significantly better image quality when optimizing for image quality. The study thus shows that the tube potential can be reduced as long as the system speed is increased simultaneously. This leads to a lower effective dose and/or increased image quality depending on the settings chosen. The factorial experiments provided a powerful way to evaluate several parameters concomitantly.
本研究的目的是找到使用平板探测器进行腰椎X线摄影的最佳设置。使用CDRAD对比细节模体在不同管电压、系统速度和滤过设置下进行成像。析因实验得出了一系列优化的曝光设置,并将其与Alderson模体的图像一起进行视觉分级分析。最初的优化设置包括将系统速度从400提高到800。对于前后位投照,最佳管电压从默认的77 kV降低到60 kV,以在不增加有效剂量的情况下获得最佳图像质量,或者降低到66 kV,以在不降低图像质量的情况下获得最低剂量。对于侧位投照,管电压同样从默认的90 kV降低到70 kV或77 kV。视觉分级分析证实了结果,在优化图像质量时图像质量明显更好。该研究表明,只要同时提高系统速度,管电压就可以降低。根据所选设置,这会导致更低的有效剂量和/或更高的图像质量。析因实验提供了一种同时评估多个参数的有效方法。