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加性噪声对数字X射线成像系统系统性能的影响。

Impact of additive noise on system performance of a digital X-ray imaging system.

作者信息

Zhang Da, Rong John, Chen Wei R, Gao Feng, Xu Kexin, Wu Xizeng, Liu Hong

机构信息

Center for Bioengineering, School of Electrical and Computer Engineering, University of Oklahoma, Norman, OK 73019, USA.

出版信息

IEEE Trans Biomed Eng. 2007 Jan;54(1):69-73. doi: 10.1109/TBME.2006.884643.

Abstract

The impact of additive noise on the performance of a digital X-ray imaging system was investigated. The X-ray system is uniquely designed for small animal studies with a focal spot of 20 microm and an adjustable source-to-object distance for radiography. The noise power spectrum and the detective quantum efficiency of this system were measured. The additive noise increased rapidly when the exposure time exceeded a certain range, since the charge-coupled devices of the detector had no cooling system. The noise power spectrum for the additive noise and the noise of the entire imaging system were studied and compared at different exposure times. The detective quantum efficiency was also measured at different exposure times. It was observed that for exposure times less than 10 s, the detective quantum efficiency ((DQE)(0)) is approximately 0.26, dropping to 0.13 at 4 lp/mm and to 0.026 at 8 lp/mm. However, when the exposure exceeds a certain limit (10 s in this study), the rapidly increased additive noise caused the system to be no longer quantum noise limited, resulting in a decreased detective quantum efficiency and a degraded system performance. For example, at an exposure of 20 s, the DQE(O) is approximately 0.22, dropping to 0.11 at 3 lp/mm and to 0.022 at 8 lp/mm.

摘要

研究了加性噪声对数字X射线成像系统性能的影响。该X射线系统专为小动物研究而独特设计,焦点为20微米,且在进行射线照相时源到物体的距离可调。测量了该系统的噪声功率谱和探测量子效率。由于探测器的电荷耦合器件没有冷却系统,当曝光时间超过一定范围时,加性噪声迅速增加。研究并比较了不同曝光时间下加性噪声的噪声功率谱以及整个成像系统的噪声。还在不同曝光时间下测量了探测量子效率。观察到,对于曝光时间小于10秒的情况,探测量子效率((DQE)(0))约为0.26,在4 lp/mm时降至0.13,在8 lp/mm时降至0.026。然而,当曝光超过一定限度(本研究中为10秒)时,迅速增加的加性噪声导致系统不再受量子噪声限制,从而使探测量子效率降低且系统性能下降。例如,在20秒的曝光下,DQE(O)约为0.22,在3 lp/mm时降至0.11,在8 lp/mm时降至0.022。

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