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The Effect of Magnification on the Image Quality and the Radiation Dose in X-ray Digital Mammography: a Monte Carlo Simulation Study

机译:放大倍数对X射线数字乳腺摄影术中图像质量和辐射剂量的影响:蒙特卡洛模拟研究

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There have been many efforts to advance the technology of X-ray digital mammography in order to enhance the early detection of breast pathology. The-purpose of this study was to evaluate image quality and the radiation dose after magnifying X-ray digital mammography using the Geant4 Application for Tomographic Emission (GATE). In this study, we simulated a Monte Carlo model of an X-ray digital mammographic system, and we present a technique for magnification and discuss how it affects the image quality. The simulated X-ray digital mammographic system with GATE consists of an X-ray source, a compression paddle, a supporting plate, and an imaging plate (IF) of computed radiography (CR). The degree of magnification ranged from 1.0 to 2.0. We designed a semi-cylindrical phantom with a thickness of 45-mm and a radius of 50-mm in order to evaluate the image quality after magnification. The phantom was made of poly methyl methacrylate (PMMA) and contained four spherical specks with diameters of 750, 500, 250, and 100-mu m to simulate microcalcifications. The simulation studies were performed with an X-ray energy spectrum calculated using the spectrum processor SRS-78. A combination of a molybdenum anode and a molybdenum filter (Mo/Mo) was used for the mammographic X-ray tubes. The effects of the degree of magnification were investigated in terms of both the contrast-to-noise ratio (CNR) and the average glandular dose (AGD). The results show that the CNR increased as the degree of magnification increased and decreased as breast glandularity increased. The AGD showed only a minor increase with magnification. Based on the results; magnification of mammographic images can be used to obtain high image quality with an increased CNR. Our X-ray digital mammographic system model with GATE may be used as a basis for future studies on X-ray imaging characteristics.
机译:为了增强对乳房病理的早期检测,已经进行了许多努力来推进X射线数字化乳房X线照相术的技术。这项研究的目的是使用Geant4断层扫描应用程序(GATE)评估X射线数字化乳腺摄影后的图像质量和辐射剂量。在这项研究中,我们模拟了X射线数字乳腺摄影系统的蒙特卡洛模型,并提出了一种放大技术,并讨论了其如何影响图像质量。带有GATE的模拟X射线数字乳腺摄影系统由X射线源,压缩板,支撑板和计算机射线照相(CR)的成像板(IF)组成。放大倍数范围从1.0到2.0。为了评估放大后的图像质量,我们设计了厚度为45毫米,半径为50毫米的半圆柱体模。该体模由聚甲基丙烯酸甲酯(PMMA)制成,并包含四个球形斑点,直径分别为750、500、250和100微米,以模拟微钙化。仿真研究是使用光谱处理器SRS-78计算出的X射线能谱进行的。钼靶X射线管使用了钼阳极和钼滤光片(Mo / Mo)的组合。根据对比噪声比(CNR)和平均腺体剂量(AGD)研究了放大程度的影响。结果表明,CNR随着放大率的增加而增加,随着乳房腺体的增加而减少。 AGD随放大率仅显示较小的增加。根据结果​​;乳房X射线照片的放大倍数可用于获得具有较高CNR的高质量图像。我们的带有GATE的X射线数字乳腺摄影系统模型可以用作未来X射线成像特性研究的基础。

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