Spektr: A computational tool for x-ray spectral analysis and imaging system optimization

被引:260
作者
Siewerdsen, JH [1 ]
Waese, AM
Moseley, DJ
Richard, S
Jaffray, DA
机构
[1] Princess Margaret Hosp, Ontario Canc Inst, Toronto, ON M5G 2M9, Canada
[2] Univ Toronto, Dept Med Biophys, Toronto, ON M5G 2M9, Canada
[3] Univ Toronto, Dept Radiat Oncol, Toronto, ON M5G 2M9, Canada
[4] Princess Margaret Hosp, Radiat Med Program, Toronto, ON M5G 2M9, Canada
关键词
x-ray spectrum; optimization; spectral modeling; cascaded systems analysis; imaging performance; detective quantum efficiency; flat-panel imager;
D O I
10.1118/1.1758350
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 set of computational tools are presented that allow convenient calculation of x-ray spectra, selection of elemental and compound filters, and calculation of beam quality characteristics, such as half-value layer, mR/mAs, and fluence per unit exposure. The TASMIP model of Boone and Seibert is adapted to a library of high-level language (Matlab(TM)) functions and shown to agree with experimental measurements across a wide range of kVp and beam filtration. Modeling of beam filtration is facilitated by a convenient, extensible database of mass and mass-energy attenuation coefficients compiled from the National Institute of Standards and Technology. The functions and database were integrated in a graphical user interface and made available online at http://www.aip.org/epaps/epaps.html. The functionality of the toolset and potential for investigation of imaging system optimization was illustrated in theoretical calculations of imaging performance across a broad range of kVp, filter material type, and filter thickness for direct and indirect-detection flat-panel imagers. The calculations reveal a number of nontrivial effects in the energy response of such detectors that may not have been guessed from simple K-edge filter techniques, and point to a variety of compelling hypotheses regarding choice of beam filtration that warrant future investigation. (C) 2004 American Association of Physicists in Medicine.
引用
收藏
页码:3057 / 3067
页数:11
相关论文
共 37 条
[11]  
*EPAPS, EMPHYA631002407
[12]   X-ray imaging with amorphous selenium: Optimal spectra for digital mammography [J].
Fahrig, R ;
Rowlands, JA ;
Yaffe, MJ .
MEDICAL PHYSICS, 1996, 23 (04) :557-567
[13]  
Fewell T., 1981, HDB COMPUTED TOMOGRA
[14]  
FEWELL T R, 1977, Medical Physics (Woodbury), V4, P187, DOI 10.1118/1.594364
[15]   Micro-angiography for neuro-vascular imaging. II. Cascade model analysis [J].
Ganguly, A ;
Rudin, S ;
Bednarek, DR ;
Hoffmann, KR .
MEDICAL PHYSICS, 2003, 30 (11) :3029-3039
[16]   Investigation of optimal kVp settings for CT mammography using a flat-panel imager [J].
Glick, SJ ;
Vedantham, S ;
Karellas, A .
MEDICAL IMAGING 2002: PHYSICS OF MEDICAL IMAGING, 2002, 4682 :392-402
[17]   Deposition of thick films of polycrystalline mercuric iodide X-ray detectors [J].
Hermon, H ;
Schieber, M ;
Zuck, A ;
Vilensky, A ;
Melekhov, L ;
Shtekel, E ;
Green, A ;
Dagan, O ;
Ready, SE ;
Street, RA ;
Seppi, E ;
Pavlyuchkova, R ;
Virshup, G ;
Zentai, G ;
Partain, L .
MEDICAL IMAGING 2001: PHYSICS OF MEDICAL IMAGING, 2001, 4320 :133-139
[18]  
Hubbell J. H., 2004, TABLES XRAY MASS ATT
[19]  
ICRU ( International Commission on Radiation Units and Measurements), 1988, 44 ICRU, V44
[20]   Cone-beam computed tomography with a flat-panel imager: Initial performance characterization [J].
Jaffray, DA ;
Siewerdsen, JH .
MEDICAL PHYSICS, 2000, 27 (06) :1311-1323