Digital radiology using active matrix readout of amorphous selenium: Theoretical analysis of detective quantum efficiency

被引:188
作者
Zhao, W [1 ]
Rowlands, JA [1 ]
机构
[1] Univ Toronto, Sunnybrook Hlth Sci Ctr, Dept Med Biophys, Toronto, ON M4N 3M5, Canada
关键词
x-ray imaging; digital radiology; amorphous selenium; active matrix readout; thin film transistors; flat-panel imagers; detective quantum efficiency (DQE); noise power spectrum (NPS); modulation transfer function (MTF);
D O I
10.1118/1.598097
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
A flat-panel x-ray imaging detector using a layer of amorphous selenium (a-Se) for direct conversion of x rays (to charge) and an active matrix for self-scanned readout is being investigated for digital radiology. A theoretical analysis of the spatial frequency dependent detective quantum efficiency (DQE(f)) of the self-scanned a-Se detector is performed based on a model of signal and noise propagation in a cascaded imaging system. Because of the high intrinsic resolution of a-Se and the pixelated active matrix readout method, such detectors are inherently undersampled and aliasing is present. The presampling modulation transfer function (MTF) and aliased noise power spectrum (NPS) of the detector were used in the analysis of DQE(f). It is proven that the aliased NPS for the self-scanned a-Se detectors is white. Since the shape of DQE(f) is determined by the ratio of MTF squared and the NPS, the shape of DQE(f) follows the square of the presampling MTF of the detector as a result of the white NPS. The analysis also shows that DQE(0) is proportional to the pixel fill factor, i.e., the fraction of each pixel area used for image charge collection. The DQE analysis is applied to detector parameters for three x-ray imaging applications: mammography, chest radiography, and fluoroscopy. The effects of pixel fill factor, imaging geometry (i.e., incident angle of x rays), and various sources of electronic noise on the detector DQE(f) are discussed. Strategies for maximizing detector DQE for each x-ray imaging application are proposed. (C) 1997 American Association of Physicists in Medicine.
引用
收藏
页码:1819 / 1833
页数:15
相关论文
共 38 条
[1]   DEMONSTRATION OF MEGAVOLTAGE AND DIAGNOSTIC-X-RAY IMAGING WITH HYDROGENATED AMORPHOUS-SILICON ARRAYS [J].
ANTONUK, LE ;
BOUDRY, J ;
HUANG, WD ;
MCSHAN, DL ;
MORTON, EJ ;
YORKSTON, J ;
LONGO, MJ ;
STREET, RA .
MEDICAL PHYSICS, 1992, 19 (06) :1455-1466
[2]   A quantum accounting and detective quantum efficiency analysis for video-based portal imaging [J].
Bissonnette, JP ;
Cunningham, IA ;
Jaffray, DA ;
Fenster, A ;
Munro, P .
MEDICAL PHYSICS, 1997, 24 (06) :815-826
[3]   ANALYSIS OF THE DETECTIVE QUANTUM EFFICIENCY OF A RADIOGRAPHIC SCREEN FILM COMBINATION [J].
BUNCH, PC ;
HUFF, KE ;
VANMETTER, R .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1987, 4 (05) :902-909
[4]   Amorphous silicon x-ray image sensor [J].
Chabbal, J ;
Chaussat, C ;
Ducourant, T ;
Fritsch, L ;
Michailos, J ;
Spinnler, V ;
Vieux, G ;
Arques, M ;
Hahm, G ;
Hoheisel, M ;
Horbaschek, H ;
Schulz, R ;
Spahn, M .
PHYSICS OF MEDICAL IMAGING: MEDICAL IMAGING 1996, 1996, 2708 :499-510
[5]   A SPATIAL-FREQUENCY DEPENDENT QUANTUM ACCOUNTING DIAGRAM AND DETECTIVE QUANTUM EFFICIENCY MODEL OF SIGNAL AND NOISE-PROPAGATION IN CASCADED IMAGING-SYSTEMS [J].
CUNNINGHAM, IA ;
WESTMORE, MS ;
FENSTER, A .
MEDICAL PHYSICS, 1994, 21 (03) :417-427
[6]   Degradation of the detective quantum efficiency due to a non-unity detector fill factor [J].
Cunningham, IA .
PHYSICS OF MEDICAL IMAGING - MEDICAL IMAGING 1997, 1997, 3032 :22-31
[7]  
CUNNINGHAM IA, 1995, P SOC PHOTO-OPT INS, V2432, P143, DOI 10.1117/12.208331
[8]  
CUNNINGHAM IA, UNPUB MED PHYS
[9]   EFFECTS OF UNDERSAMPLING ON THE PROPER INTERPRETATION OF MODULATION TRANSFER-FUNCTION, NOISE POWER SPECTRA, AND NOISE EQUIVALENT QUANTA OF DIGITAL IMAGING-SYSTEMS [J].
DOBBINS, JT .
MEDICAL PHYSICS, 1995, 22 (02) :171-181
[10]   X-RAY-IMAGING WITH AMORPHOUS SELENIUM - DETECTIVE QUANTUM EFFICIENCY OF PHOTOCONDUCTIVE RECEPTORS FOR DIGITAL MAMMOGRAPHY [J].
FAHRIG, R ;
ROWLANDS, JA ;
YAFFE, MJ .
MEDICAL PHYSICS, 1995, 22 (02) :153-160