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用于数字乳腺摄影的非晶硒平板探测器的成像性能:一种小面积原型探测器的特性

Imaging performance of amorphous selenium based flat-panel detectors for digital mammography: characterization of a small area prototype detector.

作者信息

Zhao Wei, Ji W G, Debrie Anne, Rowlands J A

机构信息

Department of Radiology, State University of New York at Stony Brook L-4 Health Sciences Center, Stony Brook, New York 11794-8460, USA.

出版信息

Med Phys. 2003 Feb;30(2):254-63. doi: 10.1118/1.1538233.

Abstract

Our work is to investigate and understand the factors affecting the imaging performance of amorphous selenium (a-Se) flat-panel detectors for digital mammography. Both theoretical and experimental methods were developed to investigate the spatial frequency dependent detective quantum efficiency [DQE(f)] of a-Se flat-panel detectors for digital mammography. Since the K edge of a-Se is 12.66 keV and within the energy range of a mammographic spectrum, a theoretical model was developed based on cascaded linear system analysis with parallel processes to take into account the effect of K fluorescence on the modulation transfer function (MTF), noise power spectrum (NPS), and DQE(f) of the detector. This model was used to understand the performance of a small-area prototype detector with 85 microm pixel size. The presampling MTF, NPS, and DQE(f) of the prototype were measured, and compared to the theoretical calculation of the model. The calculation showed that K fluorescence accounted for a 15% reduction in the MTF at the Nyquist frequency (fNy) of the prototype detector, and the NPS at fNy was reduced to 89% of that at zero spatial frequency. The measurement of presampling MTF of the prototype detector revealed an additional source of blurring, which was attributed to charge trapping in the blocking layer at the interface between a-Se and the active matrix. This introduced a drop in both presampling MTF and NPS at high spatial frequency, and reduced aliasing in the NPS. As a result, the DQE(f) of the prototype detector at fNy approached 40% of that at zero spatial frequency. The measured and calculated DQE(f) using the linear system model have reasonable agreement, indicating that the factors controlling image quality in a-Se based mammographic detectors are fully understood, and the model can be used to further optimize detector imaging performance.

摘要

我们的工作是研究和了解影响用于数字乳腺摄影的非晶硒(a-Se)平板探测器成像性能的因素。我们开发了理论和实验方法来研究用于数字乳腺摄影的a-Se平板探测器的空间频率相关探测量子效率[DQE(f)]。由于a-Se的K边为12.66 keV且在乳腺X线光谱的能量范围内,基于级联线性系统分析和平行过程开发了一个理论模型,以考虑K荧光对探测器调制传递函数(MTF)、噪声功率谱(NPS)和DQE(f)的影响。该模型用于了解具有85微米像素尺寸的小面积原型探测器的性能。测量了原型的预采样MTF、NPS和DQE(f),并与模型的理论计算结果进行了比较。计算表明,K荧光导致原型探测器在奈奎斯特频率(fNy)处的MTF降低了15%,fNy处的NPS降低到零空间频率处的89%。对原型探测器预采样MTF的测量揭示了另一个模糊源,这归因于a-Se与有源矩阵界面处阻挡层中的电荷俘获。这导致在高空间频率下预采样MTF和NPS均下降,并减少了NPS中的混叠现象。结果,原型探测器在fNy处的DQE(f)接近零空间频率处的40%。使用线性系统模型测量和计算的DQE(f)具有合理的一致性,表明对基于a-Se的乳腺摄影探测器中控制图像质量的因素有了充分的了解,并且该模型可用于进一步优化探测器的成像性能。

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