50 μm pixel size a-Se mammography imager with high DQE and increased temperature resistance

被引:2
作者
Zentai, G. [1 ]
Partain, L. [1 ]
Richmond, M. [1 ]
Ogusu, K. [2 ]
Yamada, S. [2 ]
机构
[1] Ginzton Technol Ctr Varian Med Syst, Mountain View, CA 94043 USA
[2] Hamamatsu Photon KK, Electron Tube Div, Iwata City, Shizuoka, Japan
来源
MEDICAL IMAGING 2010: PHYSICS OF MEDICAL IMAGING | 2010年 / 7622卷
关键词
imaging; X-ray imaging; direct X-ray imagers; mammography; tomosynthesis; a-Se; Flat-Panel imaging arrays; FLAT-PANEL DETECTOR; SELENIUM; PERFORMANCE;
D O I
10.1117/12.845385
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The imager presented in this paper has a special blocking structure that ensures very low dark current of less than 1 pA/mm(2) even with a 20 V/mu m electric field. Hence the electric field can be increased from the generally applied 10 V/mu m to 20V/mu m, this reduces the energy required to produce an electron hole (e-h) pair from 60 eV to about 36 eV at the given (19.3 keV mean) mammo energy. Furthermore, with special doping and manufacturing processes this a-Se layer is very stable in the 0-70 C degrees temperature range as demonstrated by Ogusu et al. [1]. A new 5 cm x 5 cm size TFT array was developed with 50 mu m pixel size, specifically for testing the resolution of photoconductor based imagers. The first new imager of this type had a 200 mu m thick a-Se layer evaporated onto the array. Its MTF, NPS, and DQE values were evaluated using 28kVp Mo anode x-ray source with a 0.03mm thick Mo and an additional 2 mm thick Al filters. The MTF value is about 40% and 50% in x-and y directions at the Nyquist frequency of 10 lp/mm. The low frequency DQE at 20 V/mu m electrical field is similar to 70% at 151 mu Gy dose and drops only about 10% when going down to 23 mu Gy. This new array also has excellent lag properties. The measured first frame image lag at 20 V/mu m is less than 1%. Such low lag provides opportunities to use this material not only for mammography but also for breast tomosynthesis applications. Breast phantom images demonstrate that even the smallest 0.13 mm calcifications are clearly visible with this high-resolution imager.
引用
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页数:9
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