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Detector or System? Extending the Concept of Detective Quantum Efficiency to Characterize the Performance of Digital Radiographic Imaging Systems

机译:检测器还是系统?扩展探测量子效率的概念以表征数字放射成像系统的性能

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摘要

>Purpose: To develop an experimental method for measuring the effective detective quantum efficiency (eDQE) of digital radiographic imaging systems and evaluate its use in select imaging systems.>Materials and Methods: A geometric phantom emulating the attenuation and scatter properties of the adult human thorax was employed to assess eight imaging systems in a total of nine configurations. The noise power spectrum (NPS) was derived from images of the phantom acquired at three exposure levels spanning the operating range of the system. The modulation transfer function (MTF) was measured by using an edge device positioned at the anterior surface of the phantom. Scatter measurements were made by using a beam-stop technique. All measurements, including those of phantom attenuation and estimates of x-ray flux, were used to compute the eDQE.>Results: The MTF results showed notable degradation owing to focal spot blur. Scatter fractions ranged between 11% and 56%, depending on the system. The eDQE(0) results ranged from 1%–17%, indicating a reduction of up to one order of magnitude and different rank ordering and performance among systems, compared with that implied in reported conventional detective quantum efficiency results from the same systems.>Conclusion: The eDQE method was easy to implement, yielded reproducible results, and provided a meaningful reflection of system performance by quantifying image quality in a clinically relevant context. The difference in the magnitude of the measured eDQE and the ideal eDQE of 100% provides a great opportunity for improving the image quality of radiographic and mammographic systems while reducing patient dose.© RSNA, 2008
机译:>目的:开发一种测量数字放射成像系统的有效探测量子效率(eDQE)的实验方法,并评估其在某些成像系统中的使用。>材料和方法:模仿成人胸腔的衰减和散射特性的几何体模被用来评估总共九种配置的八种成像系统。噪声功率谱(NPS)来自在跨越系统工作范围的三个曝光级别下获取的幻像图像。通过使用位于幻影前表面的边缘设备测量调制传递函数(MTF)。通过使用束停止技术进行散射测量。所有的测量,包括幻像衰减的测量和X射线通量的估计,都用于计算eDQE。>结果:由于焦点模糊,MTF结果显示出明显的退化。散射分数介于11%到56%之间,具体取决于系统。 eDQE(0)的结果范围为1%–17%,表明与相同系统报道的常规检测量子效率结果所隐含的结果相比,系统之间的数量级减少了一个数量级,并且等级排序和性能有所不同。 strong>结论: eDQE方法易于实施,可产生可重复的结果,并且可以通过在临床相关背景下量化图像质量来对系统性能进行有意义的反映。被测eDQE的大小与理想eDQE的100%的差异为改善射线照相和X线摄影系统的图像质量同时减少患者剂量提供了巨大的机会。©RSNA,2008

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