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Investigating the Effect of Incorporating Backscatter Photons in Molecular Breast Imaging

机译:研究在分子乳腺成像中掺入反散射光子的效果

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Molecular breast imaging (MBI) is an imaging modality used as an adjuvant to mammography in women with dense breast tissue. In order to be useful for population screening, the radiation dose from MBI must be on par with the dose obtained from x-ray mammography. In an effort to reduce radiation dose while maintaining acceptable image quality, we are investigating the use of incorporating backscattered photons in order to improve image quality. Because backscattered photons simply undergo a 180o scatter prior to detection, they yield the same spatial information as primary photons, but with reduced energy (90.4 keV for Tc-99m). We have performed Monte Carlo simulations of a Tc-99m source with a pixelated CZT based gamma camera to investigate the feasibility of backscatter imaging in an effort to reduce patient dose while maintaining image quality. Aspects of image quality was quantified through a comparison of the count sensitivity spatial resolution and contrast to noise ratio with and without backscatter photons using a clinical MBI system. Using a triple energy window scatter correction results in an increase in count sensitivity by up to 10%, minimal degradation in spatial resolution and an increase in contrast to noise ratio by up to 8%.
机译:分子乳腺成像(MBI)是用作致密乳房组织伴随乳腺X光检查的佐剂的成像模态。为了可用于种群筛查,MBI的辐射剂量必须与从X射线乳房X光检查中获得的剂量接受。为了减少辐射剂量的同时保持可接受的图像质量,我们正在研究使用反向散射光子以改善图像质量。因为背散射的光子在检测之前只需经过180O散射,所以它们会产生与初级光子相同的空间信息,但能量降低(TC-99M的90.4keV)。我们已经进行了具有像素化的CZT基伽马摄像机的TC-99M源的Monte Carlo模拟,以研究反散射成像的可行性,以减少患者剂量,同时保持图像质量。通过使用临床MBI系统的计数敏感性空间分辨率比较通过计数敏感性空间分辨率和与噪声比对比与噪声比进行对比的方面。使用三能量窗口散射校正导致计数灵敏度的增加高达10%,空间分辨率下的最小劣化,与噪声比率相比最高可达8%。

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