探测器
估计员
校准
光子计数
楔形(几何)
能量(信号处理)
补偿(心理学)
信号(编程语言)
光学
传输(电信)
光子
物理
仿射变换
断层摄影术
算法
计算机科学
数学
统计
电信
几何学
心理学
精神分析
程序设计语言
作者
Mats Persson,Hans Bornefalk
出处
期刊:IEEE Transactions on Medical Imaging
[Institute of Electrical and Electronics Engineers]
日期:2012-06-12
卷期号:31 (10): 1861-1874
被引量:20
标识
DOI:10.1109/tmi.2012.2204274
摘要
One of the challenges in the development of photon counting spectral computed tomography (CT) detectors is that the location of the energy thresholds tends to vary among detector elements. If not compensated for, this threshold variation leads to ring artifacts in the reconstructed images. In this paper, a framework is presented for the systematic comparison of different methods of compensating for inhomogeneities among detector elements in photon counting CT with multiple energy bins. Furthermore, we propose the use of an affine minimum mean square error estimator, calibrated against transmission measurements on different combinations of two materials, for inhomogeneity compensation. Using the framework developed here, this method is compared to two other compensation schemes, flatfielding using an air scan and signal-to-thickness calibration using a step wedge calibrator, in a simulation study. The results show that for all but the lowest studied level of threshold spread, the proposed method is superior to signal-to-thickness calibration, which in turn is superior to flatfielding. We also demonstrate that the effects of threshold variation can be countered to a large extent by substructuring each detector element into depth segments.
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