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X-ray performance evaluation of the dexela cmos aps x-ray detector using monochromatic synchrotron radiation in the mammographic energy range

机译:使用单色同步辐射在乳腺X射线能谱范围内评估dexela cmos aps X射线探测器的X射线性能

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摘要

Digital detectors based on complementary metal-oxide-semiconductors (CMOS) active pixel sensor (APS) technology have been introduced recently in many scientific applications. This work is focused on the X-ray performance evaluation of a novel CMOS APS detector in low energy medical imaging applications using monochromatic synchrotron radiation (i.e., 17-35 keV), which also allows studying how the performance varies with energy. The CMOS sensor was coupled to a Thallium-activated structured cesium iodide (CsI:Tl) scintillator and the detector's X-ray performance evaluation was carried out in terms of sensitivity, presampling modulation transfer function (pMTF), normalized noise power spectrum (NNPS) and the resulting detective quantum efficiency (DQE). A Monte Carlo simulation was used to validate the experimentally measured low frequency DQE. Finally, the effect of iodine's secondary generated K-fluorescence X-rays on pMTF and DQE results was evaluated. Good agreement (within 5%) was observed between the Monte Carlo and experimentally measured low frequency DQE results. A CMOS APS detector was characterized for the first time over a wide range of low energies covering the mammographic spectra. The detector's performance is limited mainly by the detectability of the scintillator. Finally, we show that the current data could be used to calculate the detector's pMTF, NNPS and DQE for any mammographic spectral shape within the investigated energies.
机译:最近,在许多科学应用中都引入了基于互补金属氧化物半导体(CMOS)有源像素传感器(APS)技术的数字检测器。这项工作的重点是使用单色同步加速器辐射(即17-35 keV)在低能医学成像应用中对新型CMOS APS检测器的X射线性能评估,该研究还可以研究性能如何随能量变化。 CMOS传感器与a活化结构碘化铯(CsI:Tl)闪烁体耦合,并根据灵敏度,预采样调制传递函数(pMTF),归一化噪声功率谱(NNPS)进行了探测器的X射线性能评估。以及由此产生的探测量子效率(DQE)。蒙特卡罗模拟用于验证实验测量的低频DQE。最后,评估了碘二次生成的K荧光X射线对pMTF和DQE结果的影响。在蒙特卡洛和实验测量的低频DQE结果之间观察到良好的一致性(5%之内)。 CMOS APS检测器首次在覆盖乳房X线照片的各种低能量范围内进行了表征。检测器的性能主要受到闪烁体检测能力的限制。最后,我们证明了当前数据可用于在所研究的能量范围内,对于任何乳腺X线照片形状,计算探测器的pMTF,NNPS和DQE。

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