Empirical and theoretical investigation of the noise performance of indirect detection, active matrix flat-panel imagers (AMFPIs) for diagnostic radiology

被引:245
作者
Siewerdsen, JH
Antonuk, LE
ElMohri, Y
Yorkston, J
Huang, W
Boudry, JM
Cunningham, IA
机构
[1] UNIV WESTERN ONTARIO,LONDON,ON N6A 5K8,CANADA
[2] LONDON HLTH SCI CTR VICTORIA,DEPT DIAGNOST RADIOL,LONDON,ON N6A 5K8,CANADA
[3] JOHN P ROBARTS RES INST,IMAGING RES LABS,LONDON,ON N6A 5K8,CANADA
关键词
digital x-ray imaging; active matrix flat-panel imager; amorphous silicon; quantum accounting diagram; detective quantum efficiency;
D O I
10.1118/1.597919
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Noise properties of active matrix, flat-panel imagers under conditions relevant to diagnostic radiology are investigated. These studies focus on imagers based upon arrays with pixels incorporating a discrete photodiode coupled to a thin-film transistor, both fabricated from hydrogenated amorphous silicon. These optically sensitive arrays are operated with an overlying x-ray converter to allow indirect detection of incident x rays. External electronics, including gate driver circuits and preamplification circuits, are also required to operate the arrays. A theoretical model describing the signal and noise transfer properties of the imagers under conditions relevant to diagnostic radiography, fluoroscopy, and mammography is developed. This frequency-dependent model is based upon a cascaded systems analysis wherein the imager is conceptually divided into a series of stages having intrinsic gain and spreading properties. Predictions from the model are compared with x-ray sensitivity and noise measurements obtained from individual pixels from an imager with a pixel format of 1536 x 1920 pixels at a pixel pitch of 127 mu m. The model is shown to be in excellent agreement with measurements obtained with diagnostic x rays using various phosphor screens. The model is used to explore the potential performance of existing and hypothetical imagers for application in radiography, fluoroscopy, and mammography as a function of exposure, additive noise, and fill factor. These theoretical predictions suggest that imagers of this general design incorporating a CsI:TI intensifying screen can be optimized to provide detective quantum efficiency (DQE) superior to existing screen-film and storage phosphor systems for general radiography and mammography. For fluoroscopy, the model predicts that with further optimization of a-Si:H imagers, DQE performance approaching that of the best x-ray image intensifier systems may be possible. The results of this analysis suggest strategies for future improvements of this imaging technology. (C) 1997 American Association of Physicists in Medicine.
引用
收藏
页码:71 / 89
页数:19
相关论文
共 69 条
  • [1] ANTONUK LE, 1993, MATER RES SOC SYMP P, V297, P945, DOI 10.1557/PROC-297-945
  • [2] ANTONUK LE, 1995, P SOC PHOTO-OPT INS, V2432, P216, DOI 10.1117/12.208340
  • [3] Empirical investigation of the signal performance of a high-resolution, indirect detection, active matrix flat-panel imager (AMFPI) for fluoroscopic and radiographic operation
    Antonuk, LE
    ElMohri, Y
    Siewerdsen, JH
    Yorkston, J
    Huang, W
    Scarpine, VE
    Street, RA
    [J]. MEDICAL PHYSICS, 1997, 24 (01) : 51 - 70
  • [4] RADIATION RESPONSE CHARACTERISTICS OF AMORPHOUS-SILICON ARRAYS FOR MEGAVOLTAGE RADIOTHERAPY IMAGING
    ANTONUK, LE
    YORKSTON, J
    HUANG, W
    BOUDRY, J
    MORTON, EJ
    LONGO, MJ
    STREET, RA
    [J]. IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1992, 39 (04) : 1069 - 1073
  • [5] ANTONUK LE, 1992, P SOC PHOTO-OPT INS, V1651, P94, DOI 10.1117/12.59387
  • [6] ANTONUK LE, 1994, IEEE T NUCL SCI, V14, P1500
  • [7] ANTONUK LE, 1992, MATER RES SOC S P, V258, P1069
  • [8] BARNES GT, 1985, RECENT DEV DIGITAL I, P16
  • [9] Barrett HH., 1981, RADIOLOGICAL IMAGING
  • [10] Bevington P. R., 2002, Data Reduction and Error Analysis For the Physical Sciences, V3rd