Maidment A D, Yaffe M J
Department of Medical Biophysics, University of Toronto, Ontario, Canada.
Med Phys. 1994 Jun;21(6):721-9. doi: 10.1118/1.597331.
The effect of optical coupling efficiency on the spatial-frequency-dependent propagation of signal and noise is considered for x-ray image detectors for digital mammography in which a phosphor screen is optically coupled to a charge-coupled device (CCD) image array. For experimental purposes, optical coupling between a Gd2O2S:Tb phosphor screen and a CCD image array was provided by relay lenses. Neutral density filters were inserted between the lenses to vary the optical coupling efficiency without altering the inherent spatial resolution. The total coupling efficiency, defined as the number of electrons (e-) recorded in the CCD per x-ray interaction in the phosphor, was calculated in each case. The modulation transfer function, and the contributions to the total noise power spectrum (NPS) of x-ray quantum noise, secondary quantum noise, and inherent detector noise were measured as a function of coupling efficiency. These data were used to calculate the spatial-frequency-dependent detective quantum efficiency [DQE(f)]. The NPS due to x-ray quantum noise had a significant spatial-frequency dependence for coupling efficiencies of more than 9 e- per x-ray interaction, but little spatial-frequency dependence for coupling efficiencies of less than 2 e- per x-ray interaction. These results indicate that to preserve high spatial-frequency values of DQE(f), and to ensure that images are x-ray quantum-noise limited at high spatial frequencies, a coupling efficiency on the order of 10 e- per x-ray interaction is required.(ABSTRACT TRUNCATED AT 250 WORDS)
对于数字乳腺摄影的X射线图像探测器,考虑了光耦合效率对信号和噪声的空间频率相关传播的影响,其中磷光屏与电荷耦合器件(CCD)图像阵列进行光耦合。出于实验目的,通过中继透镜实现了Gd2O2S:Tb磷光屏与CCD图像阵列之间的光耦合。在透镜之间插入中性密度滤光片,以改变光耦合效率而不改变固有的空间分辨率。在每种情况下,计算总耦合效率,其定义为磷光体中每一次X射线相互作用在CCD中记录的电子数(e-)。测量调制传递函数以及X射线量子噪声、二次量子噪声和探测器固有噪声对总噪声功率谱(NPS)的贡献,作为耦合效率的函数。这些数据用于计算空间频率相关的探测量子效率[DQE(f)]。对于每一次X射线相互作用耦合效率大于9 e-的情况,由X射线量子噪声引起的NPS具有显著的空间频率依赖性,但对于每一次X射线相互作用耦合效率小于2 e-的情况,空间频率依赖性很小。这些结果表明,为了保持DQE(f)的高空间频率值,并确保图像在高空间频率下受X射线量子噪声限制,每一次X射线相互作用需要大约10 e-的耦合效率。(摘要截短为250字)