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Feasibility study of contrast enhanced digital mammography based on photon-counting detector by projection-based weighting technique: A simulation study

机译:基于光子计数检测器的基于光子计数检测器的对比增强数字乳房X线照相的可行性研究:一种模拟研究

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Contrast enhanced digital mammography (CEDM) using dual energy technique has been studied due to its ability of emphasizing breast cancer. However, when using CEDM the patient dose and the toxicity of iodine should be considered. A photon counting detector (PCD), which has the ability of energy discrimination, has been regarded as an alternative technique to resolve the problem of excessive patient dose. The purpose of this study was to confirm the feasibility of CEDM based on the PCD by using a projection-based energy weighting technique. We used Geant4 Application for Tomographic Emission (GATE) version 6.0. We simulated two different types of PCD which were constructed with silicon (Si) and cadmium zinc telluride (CZT). Each inner cylinder filled with four iodine with different low concentrations and thicknesses in cylindrical shape of breast phantom. For comparison, we acquired a convention integrating mode image and five bin images based on PCD system by projection-based weighting technique. The results demonstrated that CEDM based on the PCD significantly improved contrast to noise ratio (CNR) compared to conventional integrating mode. As a result of applying the dual energy technique to the projection-based weighing image, the CNR of low concentration iodine was improved. In conclusion, the CEDM based on PCD with projection-based weighting technique has improved a detection capability of low concentration iodine than integrating mode.
机译:由于其强调乳腺癌的能力,研究了使用双能技术的对比增强数字乳房X线摄影(CEDM)。然而,当使用CEDM时,应考虑患者剂量和碘的毒性。具有能量辨别能力的光子计数检测器(PCD)被认为是解决过多患者剂量问题的替代技术。本研究的目的是通过使用基于投影的能量加权技术来确认基于PCD的CEDM的可行性。我们使用Geant4应用于断层发射(门)6.0版。我们模拟了两种不同类型的PCD,该PCD用硅(Si)和碲化镉(CZT)构成。每个内筒填充有四种碘,具有不同的低浓度和圆柱形乳房幻影的厚度。为了比较,我们通过基于投影的权重技术获取了基于PCD系统的公约集成模式图像和五个箱图像。结果表明,与传统积分模式相比,基于PCD的CEDM与噪声比(CNR)显着改善了对比度。作为将双能技术应用于基于突出的称量图像的结果,改善了低浓度碘的CNR。总之,基于PCD的CEDM具有基于突出的权重技术的浓度碘的检测能力而不是积分模式。

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