首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Effective detective quantum efficiency of two detectors in a prototype digital breast tomosynthesis
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Effective detective quantum efficiency of two detectors in a prototype digital breast tomosynthesis

机译:原型数字乳房断层合成中的两个探测器的有效侦探量子效率

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Digital breast tomosynthesis (DBT) system is a novel imaging modality that strongly depends on the detector performance. The effective detective quantum efficiency (eDQE) is a newly accepted system of performance analysis metric that solves the disadvantages of conventional DQE evaluations, which do not consider clinical operating conditions. To evaluate the eDQE, we used the direct-conversion based Anrad detector and the indirect-conversion based Dexela detector. Our aim is to study the performance of such detectors when they are mounted on a prototype DBT system. The prototype DBT system consists of a CsI(Tl) scintillator/CMOS-based flat panel digital detector and an a-Se based direct conversion detector developed by the Korea Electrotechnology Research Institute (KERI). The performance of the two detectors was compared on the basis of scatter fraction, transmission factor, effective modulation transfer function (eMTF), and effective normalized noise power spectrum (eNNPS). As a result, the Dexela detector is characterized by a decreasing eNNPS trend as the spatial frequency increases, whereas the Anrad eNNPS looks almost independent of the spatial frequency. The eMTF was found to be higher in the Anrad detector compared to that in the Dexela one for all frequencies. The eDQE values at 1 cycle/mm (low frequency) were 0.11 and 0.17 for the Anrad and Dexela detectors, respectively, and the values of the spatial frequency f(eDQE(0.1)), corresponding to eDQE = 0.1, were 1.25 and 2.81 cycles/mm for the Anrad and Dexela detectors, respectively. The Dexela detector also presented a higher contrast-to-noise ratios (CNRs) for all different sizes of mu Ca groups, thus demonstrating overall better eDQE results in imaging performance compared to the Anrad detector.
机译:数字乳房断层合成(DBT)系统是一种新颖的成像方式,强烈地依赖于检测器的性能。有效侦探量子效率(eDQE)是性能分析指标的新接受系统,解决了传统DQE评价的缺点,不考虑临床操作条件。为了评估eDQE,我们使用了直接转换基于Anrad探测器和间接转换基于Dexela探测器。我们的目的是研究这样的检测器的性能时,它们被安装在一个原型DBT系统上。原型DBT系统由CSI(T1)的闪烁体/基于CMOS的平板数字检测器和由韩国电工研究所(KERI)开发的基于硒直接转换探测器的。两个检测器的性能散射分数,透射系数,有效调制传递函数(EMTF),和归一化的有效噪声功率谱(eNNPS)的基础上进行比较。其结果是,该检测器Dexela的特征在于减少的趋势eNNPS作为空间频率的增加,而Anrad eNNPS看起来几乎不依赖于空间频率的。所述EMTF发现相比于在一个Dexela对于所有频率是在Anrad检测器高。在1个周期/毫米(低频)的eDQE值分别为用于Anrad和Dexela探测器0.11和0.17,和空间频率f的值(eDQE(0.1)),对应于eDQE = 0.1,分别为1.25和2.81周期/毫米分别为Anrad和Dexela探测器,。所述Dexela检测器还提出了一个更高的对比度噪声比(CNRS)对于所有不同尺寸的Ca亩基团的,从而整体更好表明其成像性能eDQE结果相比Anrad检测器。

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