Technical characterization of five x-ray detectors for paediatric radiography applications

被引:12
作者
Marshall, N. W. [1 ,2 ]
Smet, M. [1 ]
Hofmans, M. [1 ]
Pauwels, H. [1 ]
De Clercq, T. [1 ]
Bosmans, H. [1 ,2 ]
机构
[1] Univ Hosp Gasthuisberg, Dept Radiol, Herestr 49, B-3000 Leuven, Belgium
[2] Katholieke Univ Leuven, Med Imaging Res Ctr, Med Phys & Qual Assessment, B-3000 Leuven, Belgium
关键词
modulation transfer function (MTF); noise power spectrum (NPS); detective quantum efficiency (DQE); x-ray detector evaluation; COMPUTED RADIOGRAPHY; NOISE; SYSTEMS; PERFORMANCE; GENERATIONS; SHARPNESS; PHOSPHORS; DEVICES; IMAGES;
D O I
10.1088/1361-6560/aa9599
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Physical image quality of five x-ray detectors used in the paediatric imaging department is characterized with the aim of establishing the range/scope of imaging performance provided by these detectors for neonatal imaging. Two computed radiography (CR) detectors (MD4.0 powder imaging plate (PIP) and HD5.0 needle imaging plate (NIP), Agfa HealthCare NV, B-2640 Mortsel, Belgium) and three flat panel detectors (FPD) (the Agfa DX-D35C and DX-D45C and the DRX-2530C (Carestream Health Inc., Rochester, NY 14608, USA)) were assessed. Physical image quality was characterized using the detector metrics given by the International Electrotechnical Commission (IEC 62220-1) to measure modulation transfer function (MTF), the noise power spectrum (NPS) and the detective quantum efficiency (DQE) using the IEC-specified beam qualities of RQA3 and RQA5. The DQE was evaluated at the normal operating detector air kerma (DAK) level, defined at 2.5 mu Gy for all detectors, and at factors of 1/3.2 and 3.2 times the normal level. MTF curves for the different detectors were similar at both RQA3 and RQA5 energies; the average spatial frequency for the 50% point (MTF0.5) at RQA3 was 1.26 mm(-1), with a range from 1.20 mm(-1) to 1.37 mm(-1). The DQE of the NIP CR compared to the PIP CR was notably greater and similar to that for the FPD devices. At RQA3, average DQE for the FPD and NIP (at 0.5 mm(-1); 2.5 mu Gy) was 0.57 compared to 0.26 for the PIP CR. At the RQA5 energy, the DRX-2530C and the DX-D45C had the highest DQE (similar to 0.6 at 0.5 mm(-1); 2.5 mu Gy). Noise separation analysis using the polynomial model showed higher electronic noise for the DX-D35C and DRX-2530C detectors; this explains the reduced DQE seen at 0.7 mu Gy/image. The NIP CR detector offers notably improved DQE performance compared to the PIP CR system and a value similar to the DQE for FPD devices at the RQA3 energy.
引用
收藏
页码:N573 / N586
页数:14
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