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散射线和管电压对X线摄影对比度的影响:两种不同牙科X线胶片的比较

Influence of scattered radiation and tube potential on radiographic contrast: comparison of two different dental X-ray films.

作者信息

Helmrot E, Carlsson G A, Eckerdal O, Sandborg M

机构信息

Department of Radiation Physics, Faculty of Health Sciences, The Medical School, Linköping, Sweden.

出版信息

Dentomaxillofac Radiol. 1991 Aug;20(3):135-46. doi: 10.1259/dmfr.20.3.1807997.

Abstract

The fundamental concept in image quality of contrast has been analysed in terms of its elements; film, radiation and object contrast, and the theoretical formula to describe their interrelationship have been evaluated. Experiments were designed to investigate the dependence of radiographic contrast on the kV, the type of generator and dental film used (D and E speed). An ivory wedge was used as the object, both alone and within a polymethyl methacrylate phantom as scattering medium. Precise definition and control of the X-ray generators were achieved by means of measurements of the primary X-ray spectra using a Compton spectrometer. D speed was found to have higher film contrast than E speed when compared at the same optical density, due to its lower base and fog and lower level of saturation in these experiments. On the other hand, E speed was found to have wider latitude. The experimental object was reproduced with the highest radiographic contrast using D-speed film and, with a given type of generator, this increased when the kV was decreased. While no difference in scatter/primary ratios was observed using the two different films, a weak dependence on kV in the range from 36 to 77 kV was found and confirmed by Monte Carlo calculations. The results indicate that the D and E speed films used had equal energy absorption properties; the difference in radiographic performance is due to their different film characteristics. The importance of controlling the physical parameters (photon energy spectrum, base and fog and optical density level) when comparing image qualities is clearly demonstrated.

摘要

已从其要素方面分析了对比度图像质量的基本概念;对胶片、辐射和物体对比度进行了分析,并评估了描述它们相互关系的理论公式。设计了实验来研究射线照相对比度对千伏(kV)、发生器类型和所用牙科胶片(D速和E速)的依赖性。使用象牙楔作为物体,既单独使用,也将其置于聚甲基丙烯酸甲酯体模内作为散射介质。通过使用康普顿光谱仪测量一次X射线光谱,实现了对X射线发生器的精确定义和控制。在这些实验中,由于D速胶片的片基和灰雾较低且饱和度较低,发现在相同光学密度下,D速胶片的胶片对比度高于E速胶片。另一方面,发现E速胶片的宽容度更大。使用D速胶片时,实验物体的射线照相对比度最高,并且对于给定类型的发生器,当降低千伏时,对比度会增加。虽然使用两种不同胶片时未观察到散射/一次射线比率的差异,但在36至77 kV范围内发现了对千伏的微弱依赖性,并通过蒙特卡罗计算得到了证实。结果表明,所用的D速和E速胶片具有相等的能量吸收特性;射线照相性能的差异是由于它们不同的胶片特性。清楚地证明了在比较图像质量时控制物理参数(光子能谱、片基和灰雾以及光学密度水平)的重要性。

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