Van Metter R, Dickerson R
Health Sciences Division, Eastman Kodak Company, Rochester, New York 14650-2035.
Med Phys. 1994 Sep;21(9):1483-90. doi: 10.1118/1.597407.
A study of the objective imaging characteristics of a new asymmetric screen-film system is presented herein. The system is characterized by high x-ray absorption asymmetric screens, and a low-noise, high-contrast asymmetric film having near-zero crossover. Comparisons are made with the imaging characteristics of two widely used conventional screen-film systems. Sensitometry, modulation transfer function, and noise power spectra were measured using standard methods. Granularity, noise equivalent quanta, and detective quantum efficiency were computed from these. The new screen-film system has an average gradient at lung-field densities between the two conventional systems studied, while the mediastinum contrast exceeds both conventional systems. The lung-field modulation transfer function half bandwidth of the new asymmetric system exceeds that of both conventional systems by 60%. At mid exposures the detective quantum efficiency of the new asymmetric system is comparable to those of the conventional systems studied. However, the exposure range over which detective quantum efficiency remains high is substantially wider.
本文介绍了一种新型非对称增感屏-胶片系统的客观成像特性研究。该系统的特点是具有高X射线吸收的非对称增感屏,以及具有近零交叉效应的低噪声、高对比度非对称胶片。将其成像特性与两种广泛使用的传统增感屏-胶片系统进行了比较。采用标准方法测量了感光度、调制传递函数和噪声功率谱。并据此计算了颗粒度、噪声等效量子数和探测量子效率。新型增感屏-胶片系统在研究的两种传统系统之间的肺野密度处具有平均梯度,而纵隔对比度超过了两种传统系统。新型非对称系统的肺野调制传递函数半带宽比两种传统系统均高出60%。在中等曝光量时,新型非对称系统的探测量子效率与所研究的传统系统相当。然而,探测量子效率保持较高的曝光范围要宽得多。