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Technique to improve the effective fill factor of digital mammographic imagers

机译:提高数字乳腺X射线摄影仪有效填充系数的技术

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Abstract: Current clinical mammographic imaging has been limited to screen/film, but advances in photodetector and x-ray converter technology has opened up the possibility of significantly improving mammographic screening with digital imagers. One limitation of some recently developed in direct detection imagers is a limited optical fill factor in the photodetector. A small fill factor reduces the amount of light collected from individual x-ray interactions in the screen. It can also lead to an overall reduction in the number of x-ray quanta detected. In addition, the fill factor usually decreases with an increase in photodetector resolution. To reduce these effects, we propose a technique for improving the effective fill factor of any indirect detection imager by incorporating focusing microlens arrays between the phosphor screen and the photodetector. In this investigation, we evaluate the light collection efficiencies of our proposed imager/microlens combination using Monte Carlo simulation and optical ray tracing. !15
机译:摘要:当前的临床乳腺X线摄影仅限于屏幕/胶片,但是光电探测器和X射线转换器技术的进步为利用数字成像仪显着改善乳腺X线摄影提供了可能性。直接检测成像器中最近开发的一些限制是光电检测器中有限的光学填充因子。较小的填充因子会减少从屏幕中各个X射线相互作用收集的光量。这也可能导致检测到的X射线量子数量的总体减少。另外,填充因数通常随着光电检测器分辨率的提高而降低。为了减少这些影响,我们提出了一种通过在荧光屏和光电检测器之间合并聚焦微透镜阵列来提高任何间接检测成像器的有效填充因子的技术。在这项调查中,我们使用蒙特卡罗模拟和光线追踪评估了我们提出的成像器/微透镜组合的集光效率。 !15

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