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Characterization of noise sources for two generations of computed radiography systems using powder and crystalline photostimulable phosphors.

机译:使用粉末和晶体可光激发磷光体的两代计算机放射成像系统的噪声源表征。

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The performances of two generations of computed radiography (CR) were tested and compared in terms of resolution and noise characteristics. The main aim was to characterize and quantify the noise sources in the images. The systems tested were (1) Agfa CR 25.0, a flying spot reader with powder phosphor image plates (MD 40.0); and (2) the Agfa DX-S, a line-scanning CR reader with needle crystal phosphor image plates (HD 5.0). For both systems, the standard metrics of presampled modulation transfer function (MTF), normalized noise power spectra (NNPS) and detective quantum efficiency (DQE) were measured using standard radiation quality RQA5 as defined by the International Electrotechnical Commission. The various noise sources contributing to the NNPS were separated by using knowledge of their relationship with air kerma, MTF, absorption efficiency and antialiasing filters. The DX-S MTF was superior compared with the CR 25.0. The maximum difference in MTF between the DX-S scan and CR 25.0 subscan directions was 0.13 at 1.3 mm(-1). For a nominal detector air kerma of 4 microGy, the peak DQE of the DX-S was 43 (+/-3)%, which was over double that of the CR 25.0 of 18 (+/-2)%. The additive electronic noise was negligible on the CR 25.0 but calculated to be constant 3.4 x 10(-7) (+/-0.4 x 10(-7)) mm2 at 3.9 microGy on the DX-S. The DX-S has improved image quality compared with a traditional flying spot reader. The separation of the noise sources indicates that the improvements in DQE of the DX-S are due not only to the higher quantum, efficiency and MTF, but also the lower structure, secondary quantum, and excess noise.
机译:测试了两代计算机射线照相(CR)的性能,并就分辨率和噪声特性进行了比较。主要目的是表征和量化图像中的噪声源。测试的系统是(1)Agfa CR 25.0,带有粉末荧光粉图像板的飞点读取器(MD 40.0); (2)爱克发DX-S,一种带有针状磷光体图像板的高清线扫描CR读取器(HD 5.0)。对于这两种系统,均使用国际电工委员会定义的标准辐射质量RQA5测量了预采样调制传递函数(MTF),归一化噪声功率谱(NNPS)和探测量子效率(DQE)的标准度量。通过使用与空气比释动能,MTF,吸收效率和抗混叠滤波器的关系知识,可以分离出对NNPS有用的各种噪声源。 DX-S MTF优于CR 25.0。 DX-S扫描和CR 25.0子扫描方向之间的MTF最大差异为1.3 mm(-1)时为0.13。对于4 microGy的标称检测器空气比释动能,DX-S的峰值DQE为43(+/- 3)%,是CR 25.0的18(+/- 2)%的两倍多。在CR 25.0上,附加的电子噪声可以忽略不计,但在DX-S上以3.9 microGy计算为恒定的3.4 x 10(-7)(+/- 0.4 x 10(-7))mm2。与传统的飞行点读取器相比,DX-S改善了图像质量。噪声源的分离表明DX-S的DQE的提高不仅归因于较高的量子,效率和MTF,而且归因于较低的结构,次级量子和过量噪声。

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