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Analysis of the imaging performance in indirect digital mammography detectors by linear systems and signal detection models

机译:通过线性系统和信号检测模型分析间接数字乳腺摄影探测器的成像性能

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Purpose: The purpose of this study was to provide an analysis of imaging performance in digital mammography, using indirect detector instrumentation, by combining the Linear Cascaded Systems (LCS) theory and the Signal Detection Theory (SDT). Observer performance was assessed, by examining frequently employed detectors, consisting of phosphor-based X-ray converters (granular Gd_2O_2S:Tb and structural CsI:Tl), coupled with the recently introduced complementary metal-oxide-semiconductor (CMOS) sensor. By applying combinations of various irradiation conditions (filter-target and exposure levels at 28 kV) on imaging detectors, our study aimed to find the optimum system set-up for digital mammography. For this purpose, the signal to noise transfer properties of the medical imaging detectors were examined for breast carcinoma detectability. Methods: An analytical model was applied to calculate X-ray interactions within software breast phantoms and detective media. Modeling involved: (a) three X-ray spectra used in digital mammography: 28 kV Mo/Mo (Mo: 0.030 mm), 28 kV Rh/Rh (Rh: 0.025 mm) and 28 kV W/Rh (Rh: 0.060 mm) at different entrance surface air kerma (ESAK) of 3 mGy and 5 mGy, (b) a 5 cm thick Perspex software phantom incorporating a small Ca lesion of varying size (0.1-1 cm), and (c) two 200 urn thick phosphor-based X-ray converters (Gd2O2S:Tb, CsI:Tl), coupled to a CMOS based detector of 22.5 urn pixel size. Results: Best (lowest) contrast threshold (CT) values were obtained with the combination: (i) W/Rh target-filter, (ii) 5 mGy (ESAK), and (iii) Csl:Tl-CMOS detector. For lesion diameter 0.5 cm the CT was found improved, in comparison to other anode/filter combinations, approximately 42% than Rh/Rh and 55% than Mo/Mo, for small sized carcinoma (0.1 cm) and approximately 50% than Rh/Rh and 125% than Mo/Mo, for big sized carcinoma (1 cm), considering 5 mGy X-ray beam. By decreasing lesion diameter and thickness, a limiting CT (100%) was occurred for size values less than 0.2 cm. Conclusion: CT was found to be affected by the selection of target/filter and exposure combination. It was found that the optimum thickness of CsI:Tl was approximately 190 μm and for Gd_2O_2S:Tb 120 μm for the studied energy and ESAK range.
机译:目的:本研究的目的是通过结合线性级联系统(LCS)理论和信号检测理论(SDT),使用间接检测器仪器对数字乳腺摄影的成像性能进行分析。通过检查经常使用的探测器(包括基于磷的X射线转换器(颗粒状Gd_2O_2S:Tb和结构性CsI:Tl)以及最近推出的互补金属氧化物半导体(CMOS)传感器)来评估观察者的性能。通过在成像探测器上应用各种辐照条件(滤镜目标和28 kV的暴露水平)的组合,我们的研究旨在找到数字乳腺摄影的最佳系统设置。为此,检查了医学成像检测器的信噪比传输特性是否具有乳腺癌可检测性。方法:使用分析模型计算软件乳房幻像和侦探介质中的X射线相互作用。涉及的建模:(a)数字乳腺摄影中使用的三个X射线光谱:28 kV Mo / Mo(Mo:0.030 mm),28 kV Rh / Rh(Rh:0.025 mm)和28 kV W / Rh(Rh:0.060 mm) )在3 mGy和5 mGy的不同入射表面空气比释动能(ESAK)下,(b)厚5厘米的Perspex软件幻影,其中合并了一个大小不一的小Ca病​​变(0.1-1 cm),以及(c)厚200 n的两个基于磷光体的X射线转换器(Gd2O2S:Tb,CsI:Tl),耦合到22.5微米像素大小的CMOS检测器。结果:通过以下组合可获得最佳(最低)对比度阈值(CT)值:(i)W / Rh目标滤光片;(ii)5 mGy(ESAK);以及(iii)Csl:Tl-CMOS检测器。与其他阳极/过滤器组合相比,对于直径为0.5 cm的病变,CT改善了,对于小型癌(0.1 cm),比Rh / Rh约高42%,比Mo / Mo约55%,对Rh / Rh约50%。考虑到5 mGy X射线束,对于大型癌(1厘米),Rh和Mo / Mo的125%。通过减小病变直径和厚度,对于小于0.2 cm的大小值,出现了CT极限(100%)。结论:CT被发现受靶/过滤器选择和暴露组合的影响。发现对于研究的能量和ESAK范围,CsI:Tl的最佳厚度约为190μm,对于Gd_2O_2S:Tb的最佳厚度为120μm。

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    Department of Medical Instruments Technology, Technological Educational Institute, 122 10 Athens, Greece;

    Department of Medical Instruments Technology, Technological Educational Institute, 122 10 Athens, Greece;

    Department of Medical Instruments Technology, Technological Educational Institute, 122 10 Athens, Greece;

    Department of Medical Instruments Technology, Technological Educational Institute, 122 10 Athens, Greece;

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  • 正文语种 eng
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  • 关键词

    modelling; digital mammography; X-ray converters;

    机译:造型;数字乳腺摄影X射线转换器;

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