Detective Quantum Efficiency of a CsI-CMOS X-ray Detector for Breast Tomosynthesis Operating in High Dynamic Range and High Sensitivity Modes.

Tushita Patel, Kelly Klanian, Zongyi Gong, Mark B Williams
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引用次数: 11

Abstract

The spatial frequency dependent detective quantum efficiency (DQE) of a CsI-CMOS x-ray detector was measured in two operating modes: a high dynamic range (HDR) mode and a high sensitivity (HS) mode. DQE calculations were performed using the IEC-62220-1-2 Standard. For detector entrance air kerma values between ~7 µGy and 60 µGy the DQE is similar in either HDR mode or HS mode, with a value of ~0.7 at low frequency and ~ 0.15 - 0.20 at the Nyquist frequency fN = 6.7 mm-1. In HDR mode the DQE remains virtually constant for operation with Ka values between ~7 µGy and 119 µGy but decreases for Ka levels below ~ 7 µGy. In HS mode the DQE is approximately constant over the full range of entrance air kerma tested between 1.7 µGy and 60 µGy but kerma values above ~75 µGy produce hard saturation. Quantum limited operation in HS mode for entrance kerma as small as 1.7 µGy makes it possible to use a large number of low dose views to improve angular sampling and decrease acquisition time.

在高动态范围和高灵敏度模式下用于乳腺断层合成的cmos - cmos x射线探测器的探测量子效率。
在高动态范围(HDR)和高灵敏度(HS)两种工作模式下,测量了cmos x射线探测器的空间频率相关探测量子效率(DQE)。DQE计算使用IEC-62220-1-2标准执行。在HDR模式和HS模式下,探测器入口空气kerma值在~7 ~ 60µGy之间时,DQE值在低频为~0.7,在奈奎斯特频率fN = 6.7 mm-1时为~ 0.15 ~ 0.20。在HDR模式下,当Ka值介于~7µGy和119µGy之间时,DQE几乎保持不变,但当Ka水平低于~7µGy时,DQE会下降。在HS模式下,DQE在1.7µGy到60µGy之间的整个测试入口空气kerma范围内近似恒定,但kerma值高于~75µGy会产生硬饱和。在HS模式下,入口kerma小至1.7µGy的量子限制操作使得使用大量低剂量视图来改善角度采样并减少采集时间成为可能。
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