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首页> 外文期刊>Medical Physics >Determination of the two-dimensional detective quantum efficiency of a computed radiography system.
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Determination of the two-dimensional detective quantum efficiency of a computed radiography system.

机译:确定计算机射线照相系统的二维探测量子效率。

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摘要

Based on a recently described method for determining the two-dimensional presampling modulation transfer function (MTF), the aperture mask method, a method for determining the two-dimensional detective quantum efficiency (DQE) of a digital radiographic system was developed. The method was applied to a new computed radiography (CR) system and comparisons with one-dimensional determinations of the presampling MTF and the DQE were performed. The aperture mask method was shown to agree with the conventional tilted slit method for determining the presampling MTF along the axes. For the particular CR system studied, the mean of one-dimensional determinations of the DQE in orthogonal directions led to a representative measure of the average DQE behavior of the system up to the Nyquist frequency along the axes, but a deviation was observed above this frequency. In conclusion, the method developed for determining the two-dimensional DQE can be used to determine the imaging properties of a digital radiographic detector system over almost the entire frequency domain, the exception being the lowest frequencies (< or = 0.1 mm(-1)) at which the validity and the reliability of the method are low.
机译:基于最近描述的用于确定二维预采样调制传递函数(MTF)的方法,孔径掩模方法,开发了一种用于确定数字射线照相系统的二维检测量子效率(DQE)的方法。将该方法应用于新的计算机射线照相(CR)系统,并与一维确定的预采样MTF和DQE进行了比较。孔径光罩方法与传统的倾斜狭缝方法一致,用于确定沿轴的预采样MTF。对于所研究的特定CR系统,在正交方向上对DQE进行一维确定的平均值导致对沿轴向Nyquist频率的系统的平均DQE行为进行了代表性测量,但在该频率之上观察到了偏差。总之,为确定二维DQE而开发的方法可用于确定数字射线照相检测器系统在几乎整个频域上的成像特性,但最低频率除外(<或= 0.1 mm(-1) ),该方法的有效性和可靠性较低。

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