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Factors for conversion between human and automatic read-outs of CDMAM images

机译:人工和自动读取CDMAM图像之间转换的因素

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According to the European protocol for the quality control of the physical and technical aspects of mammography screening (EPQCM) image quality of digital mammography devices has to be evaluated using the CDMAM (contrast-detail mammography) phantom. The evaluation of image quality is accomplished by the determination of threshold thicknesses of gold disks of different diameters (0.08 mm to 2 mm). The EPQCM requires this task to be performed by qualified human observers and revealed to be very time consuming.Therefore a software solution was provided by the European Reference Organisation for Quality Assured Breast Screening (Euref) known as 'cdcom'. The problem with this program is that it provides threshold thicknesses different from the results gained by human readers. Factors for the conversion from automatic to human read outs depend on the diameter of the gold disk and were estimated using a huge amount of data, both human and automatic read outs. But these factors provided by various groups differ from each other and are purely phenomenological. Our approach uses the Rose theory which gives a correlation between threshold contrast, diameter of the object and number of incident photons. To estimate the five conversion factors between the diameters of 0.2 mm and 0.5 mm we exposed with five different current-time products which resulted in 25 equations with six unknowns (5 factors and one constant). This optimization problem was then solved using the Excel built-in solver. The theoretical conversion factors amounted to be 1.62, 1.75, 2.04, 2.20, 2.39 for the diameters of 0.2, 0.25, 0.31, 0.4, and 0.5 mm. The corresponding phenomenological factors found in literature are 1.74, 1.78, 1.83, 1.88, and 1.93. The applied method reveals to be very robust and produces factors comparable to the phenomenological ones.
机译:根据用于乳腺X线筛查(EPQCM)物理和技术方面质量控制的欧洲协议,必须使用CDMAM(对比细节乳腺X线照相)体模对数字乳腺X线照相设备的图像质量进行评估。图像质量的评估是通过确定不同直径(0.08毫米至2毫米)的金盘的阈值厚度来完成的。 EPQCM要求这项工作必须由合格的人类观察员来完成,而且非常耗时。因此,欧洲质量保证乳房筛查参考组织(Euref)提供了一种称为“ cdcom”的软件解决方案。该程序的问题在于它提供的阈值厚度与人类读者获得的结果不同。从自动读数转换为人工读数的因素取决于金盘的直径,并使用大量数据(人工读数和自动读数)进行估算。但是,各个小组提供的这些因素彼此不同,并且纯粹是现象学上的。我们的方法使用罗斯理论,该理论给出了阈值对比度,物体直径和入射光子数量之间的相关性。为了估算直径在0.2 mm和0.5 mm之间的五个转换因子,我们使用了五种不同的当前时间乘积,得出了25个方程式,其中包含6个未知数(5个因素和一个常数)。然后使用Excel内置求解器解决了此优化问题。对于0.2、0.25、0.31、0.4和0.5mm的直径,理论转换因子总计为1.62、1.75、2.04、2.20、2.39。文献中发现的相应的现象学因素是1.74、1.78、1.83、1.88和1.93。应用的方法显示出非常强大的功能,并产生了与现象学可比的因素。

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