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使用非晶态硒有源矩阵读出的数字放射学:探测量子效率的理论分析。

Digital radiology using active matrix readout of amorphous selenium: theoretical analysis of detective quantum efficiency.

作者信息

Zhao W, Rowlands J A

机构信息

Department of Medical Biophysics, University of Toronto, Sunnybrook Health Science Centre, Ontario, Canada.

出版信息

Med Phys. 1997 Dec;24(12):1819-33. doi: 10.1118/1.598097.

Abstract

A flat-panel x-ray imaging detector using a layer of amorphous selenium (a-Se) for direct conversion of x rays (to charge) and an active matrix for self-scanned readout is being investigated for digital radiology. A theoretical analysis of the spatial frequency dependent detective quantum efficiency (DQE(f)) of the self-scanned a-Se detector is performed based on a model of signal and noise propagation in a cascaded imaging system. Because of the high intrinsic resolution of a-Se and the pixelated active matrix readout method, such detectors are inherently undersampled and aliasing is present. The presampling modulation transfer function (MTF) and aliased noise power spectrum (NPS) of the detector were used in the analysis of DQE(f). It is proven that the aliased NPS for the self-scanned a-Se detectors is white. Since the shape of DQE(f) is determined by the ratio of MTF squared and the NPS, the shape of DQE(f) follows the square of the presampling MTF of the detector as a result of the white NPS. The analysis also shows that DQE(0) is proportional to the pixel fill factor, i.e., the fraction of each pixel area used for image charge collection. The DQE analysis is applied to detector parameters for three x-ray imaging applications: mammography, chest radiography, and fluoroscopy. The effects of pixel fill factor, imaging geometry (i.e., incident angle of x rays), and various sources of electronic noise on the detector DQE(f) are discussed. Strategies for maximizing detector DQE for each x-ray imaging application are proposed.

摘要

一种用于数字放射学的平板X射线成像探测器正在被研究,它使用一层非晶硒(a-Se)将X射线直接转换为电荷,并使用有源矩阵进行自扫描读出。基于级联成像系统中信号和噪声传播的模型,对自扫描a-Se探测器的空间频率相关探测量子效率(DQE(f))进行了理论分析。由于a-Se的高固有分辨率和像素化有源矩阵读出方法,此类探测器本质上存在欠采样且存在混叠现象。探测器的预采样调制传递函数(MTF)和混叠噪声功率谱(NPS)被用于DQE(f)的分析。结果证明,自扫描a-Se探测器的混叠NPS是白色的。由于DQE(f)的形状由MTF平方与NPS的比值决定,由于NPS是白色的,所以DQE(f)的形状遵循探测器预采样MTF的平方。分析还表明,DQE(0)与像素填充因子成正比,即每个像素区域用于图像电荷收集的比例。DQE分析应用于三种X射线成像应用的探测器参数:乳腺摄影、胸部X线摄影和荧光透视。讨论了像素填充因子、成像几何结构(即X射线入射角)以及各种电子噪声源对探测器DQE(f)的影响。针对每种X射线成像应用,提出了使探测器DQE最大化的策略。

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