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Comparison of low contrast detectability between a digital amorphous silicon and a screen-film based imaging system for thoracic radiography.

机译:数字无定形硅与基于胸片的基于屏幕胶片的成像系统之间低对比度可检测性的比较。

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Low contrast threshold detectability is investigated theoretically and experimentally for an amorphous silicon (a-Si) x-ray detector designed for digital radiography and for a standard thoracic screen-film combination. A theoretical signal-to-noise ratio is described with a human observer signal detection model. It is calculated using the detective quantum efficiency (DQE) and the modulation transfer function of the imaging system, as well as a spatial response function for the human visual system. Using a four-alternative forced choice observer perception study, the threshold contrasts of disk shaped objects ranging in size from 0.3 to 4.0 mm are determined. Significantly better contrast detectability is obtained from the digital detector, which is attributed to its higher DQE. On average, the disk shaped objects can be detected at 45% less contrast than required for screen-film. With no free parameters the experimental data agree well with those predicted by the observer model. Based upon the data, the model predicts that x-ray exposure for the a-Si detector only needs to be 30% of the exposure required to perform equally well on the contrast-detail detectability task using screen-film.
机译:对于设计用于数字射线照相的非晶硅(a-Si)X射线检测器和标准的胸部屏幕胶片组合,从理论上和实验上研究了低对比度阈值可检测性。用人类观察者信号检测模型描述了理论信噪比。它是使用探测量子效率(DQE)和成像系统的调制传递函数以及人类视觉系统的空间响应函数来计算的。使用四项强制选择的观察者感知研究,确定大小范围从0.3到4.0毫米的盘状物体的阈值对比度。从数字检测器获得明显更好的对比度可检测性,这归因于其较高的DQE。平均而言,可以以比屏幕胶片所需的对比度低45%的对比度检测到盘状物体。没有自由参数,实验数据与观察者模型预测的数据吻合良好。基于这些数据,该模型预测,a-Si检测器的X射线曝光量仅是在使用屏幕胶卷进行对比度细节可检测性任务中同样表现出色所需的曝光量的30%。

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