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首页> 外文期刊>Medical Physics >Evaluation of the imaging properties of two generations of a CCD-based system for digital chest radiography.
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Evaluation of the imaging properties of two generations of a CCD-based system for digital chest radiography.

机译:评价两代基于CCD的数字式胸部X线摄影系统的成像特性。

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Two generations of a CCD-based detector system with lens-based optical coupling for digital chest radiography were evaluated in terms of presampling MTF, NPS, NEQ, DQE, linearity in response, and SNR over the detector area. Measurements were performed over a wide exposure range and at several different beam qualities. Neither the presampling MTF nor the DQE showed any general strong beam quality dependence, whereas the NPS and NEQ did when compared at specific entrance air kerma values. The exposure dependency for the DQE was found to be considerable, with the detectors showing low DQE at low exposures, and higher DQE at higher exposures. It was found that the second generation has been substantially improved compared to its predecessor regarding all the relevant parameters. The DQE(0) at an entrance air kerma of 5 microGy increased from 9% to 15%, mainly due to a better system gain (including optical coupling efficiency and matching of the energy of the emitted light photons to the sensitivity of the CCD camera). The first generation of detectors was found to have problems with bad peripheral resolution [MTF(muN/2) <0.1]. This problem was nonexistent for the second generation for which uniform resolution has been obtained [MTF(muN/2)=0.3]. A theoretical calculation of the DQE of two model systems similar to the ones evaluated was also performed, and the results were comparable to the experimentally determined data at high exposures. The model shows that both systems suffer from low optical coupling efficiency due to the large demagnification used. The main conclusion is that although the second generation has been improved, there is still a problem with low system gain leading to relatively modest DQE values, especially at low exposures.
机译:在预采样MTF,NPS,NEQ,DQE,响应线性和检测器区域的SNR方面,评估了两代基于CCD的检测器系统和基于透镜的光耦合器以进行数字胸部X线摄影。在较宽的曝光范围和几种不同的光束质量下进行测量。在特定的入口空气比释动能值进行比较时,预采样的MTF和DQE都没有显示出任何普遍的强光束质量依赖性,而NPS和NEQ却没有。发现DQE的曝光依赖性很大,检测器在低曝光下显示出低DQE,在高曝光下显示出较高的DQE。在所有相关参数方面,发现与第二代相比,第二代有了显着改进。进入空气比释动能为5 microGy时的DQE(0)从9%增至15%,这主要归因于更好的系统增益(包括光耦合效率以及发射光子的能量与CCD摄像机的灵敏度匹配) )。发现第一代检测器存在外围分辨率较差的问题[MTF(muN / 2)<0.1]。对于已经获得均匀分辨率[MTF(muN / 2)= 0.3]的第二代,这个问题不存在。还对与评估的模型系统相似的两个模型系统的DQE进行了理论计算,结果与在高曝光量下通过实验确定的数据相当。该模型表明,由于使用了较大的放大倍数,因此两个系统的光耦合效率均很低。主要结论是,尽管改进了第二代产品,但仍然存在系统增益低导致DQE值相对适中的问题,尤其是在低曝光量下。

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