Physical characteristics of a commercial electronic portal imaging device

被引:22
作者
Althof, VGM
deBoer, JCJ
Huizenga, H
Stroom, JC
Visser, AG
Swanenburg, BN
机构
[1] DR DANIEL DEN HOED CANC CTR,DEPT CLIN PHYS,NL-3075 EA ROTTERDAM,NETHERLANDS
[2] SRON,SPACE RES LAB,NL-3584 CA UTRECHT,NETHERLANDS
关键词
fluoroscopic portal imaging system; on-line portal imaging; radiotherapy verification; portal image quality;
D O I
10.1118/1.597836
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
An electronic portal imaging device (EPID) for use in radiotherapy with high energy photons has been under development since 1985 and has been in clinical use since 1988. The x-ray detector consists of a metal plate/fluorescent screen combination, which is monitored by a charge-coupled device (CCD)-camera. This paper discusses the physical quantities governing image quality. A model which describes the signal and noise propagation through the detector is presented. The predicted contrasts and signal-to-noise ratios are found to be in agreement with measurements based on the EPID images. Based on this agreement the visibility of low contrast structures in clinical images has been calculated with the model. Sufficient visibility of relevant structures (4-10 mm water-equivalent thickness) has been obtained down to a delivered dose of 4 cGy at dose maximum. It is found that the described system is not limited by quantum noise but by camera read-out noise. In addition we predict that with a new type of CCD sensor the signal-to-noise ratio can be increased by a factor of 5 at small doses, enabling high quality imaging, for most relevant clinical situations: with a patient dose smaller than 4 cGy. The latter system would be quantum noise limited. (C) 1996 American Association of Physicists in Medicine.
引用
收藏
页码:1845 / 1855
页数:11
相关论文
共 28 条
[21]   VIDEO TECHNIQUES FOR ONLINE PORTAL IMAGING [J].
SHALEV, S ;
LEE, T ;
LESZCZYNSKI, K ;
COSBY, S ;
CHU, T .
COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 1989, 13 (03) :217-226
[22]  
SIMS GR, 1987, OPT ENG, V26, P1008
[23]   THE LENS COUPLING EFFICIENCY IN MEGAVOLTAGE IMAGING [J].
SWINDELL, W .
MEDICAL PHYSICS, 1991, 18 (06) :1152-1153
[24]   THE DESIGN OF MEGAVOLTAGE PROJECTION IMAGING-SYSTEMS - SOME THEORETICAL ASPECTS [J].
SWINDELL, W ;
MORTON, EJ ;
EVANS, PM ;
LEWIS, DG .
MEDICAL PHYSICS, 1991, 18 (05) :855-866
[25]   A MATRIX IONIZATION-CHAMBER IMAGING DEVICE FOR ONLINE PATIENT SETUP VERIFICATION DURING RADIOTHERAPY [J].
VANHERK, M ;
MEERTENS, H .
RADIOTHERAPY AND ONCOLOGY, 1988, 11 (04) :369-378
[26]   PERFORMANCE OF A PROTOTYPE FLUOROSCOPIC RADIOTHERAPY IMAGING-SYSTEM [J].
VISSER, AG ;
HUIZENGA, H ;
ALTHOF, VGM ;
SWANENBURG, BN .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1990, 18 (01) :43-50
[27]   ONLINE RADIOTHERAPY IMAGING WITH AN ARRAY OF FIBEROPTIC IMAGE REDUCERS [J].
WONG, JW ;
BINNS, WR ;
CHENG, AY ;
GEER, LY ;
EPSTEIN, JW ;
KLARMANN, J ;
PURDY, JA .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1990, 18 (06) :1477-1484
[28]  
ZWIEG G, 1979, P SOC PHOTO-OPT INS, V419, P297