Evaluation of x-ray scatter properties in a dedicated cone-beam breast CT scanner

被引:107
作者
Kwan, ALC
Boone, JM
Shah, N
机构
[1] Univ Calif Davis, Med Ctr, Dept Radiol, Xray Imaging Lab, Sacramento, CA 95817 USA
[2] Univ Calif Davis, Dept Biomed Engn, Davis, CA 95616 USA
关键词
D O I
10.1118/1.1954908
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
The magnitude of scatter contamination on a first-generation prototype breast computed tomography (CT) scanner was evaluated using the scatter-to-primary ratio (SPR) metric. The SPR was measured and characterized over a wide range of parameters relevant to breast CT imaging, including x-ray beam energy, breast diameter, breast composition, isocenter-to-detector distance, collimated slot thickness, and grid ratio. The results demonstrated that in the absence of scatter reduction techniques, the SPR levels for the average breast (e.g., 14 cm diameter 50/50 composition cylindrical phantom) are quite high (similar to 0.5 at the center of the phantom for 80 kVp in true cone-beam CT geometry), and increases as the diameter of the phantom is increased (to similar to 1.0 at the center of a 18 cm diameter 50/50 phantom). The x-ray beam energy and the phantom compositions had only minimal impact on the measured SPR. When an ideal bowtie filter was used, the SPRs at the central axis of the 14 and 18 cm cylindrical phantoms were reduced while the SPRs at the edge of the phantoms were increased. Lastly, collimation in the vertical direction had a significant impact on the SPRs at the central axis of the phantoms. These high SPR levels might lead to cupping artifacts and increased noise in the reconstructed CT images, and this suggests that efficient scatter rejection and/or correction techniques may be required to improve the quality and accuracy of cone beam CT images. (C) 2005 American Association of Physicists in Medicine.
引用
收藏
页码:2967 / 2975
页数:9
相关论文
共 49 条
[1]   QUALITY AND CHOICE OF POTTER BUCKY GRIDS .1. A NEW METHOD FOR THE UNAMBIGUOUS DETERMINATION OF THE QUALITY OF A GRID [J].
BONENKAMP, JG ;
BOLDINGH, WH .
ACTA RADIOLOGICA, 1959, 51 (06) :479-489
[2]   Scatter/primary in mammography: Comprehensive results [J].
Boone, JM ;
Lindfors, KK ;
Cooper, VN ;
Seibert, JA .
MEDICAL PHYSICS, 2000, 27 (10) :2408-2416
[3]   Scatter/primary in mammography: Monte Carlo validation [J].
Boone, JM ;
Cooper, VN .
MEDICAL PHYSICS, 2000, 27 (08) :1818-1831
[4]   A comprehensive analysis of DgNCT coefficients for pendant-geometry cone-beam breast computed tomography [J].
Boone, JM ;
Shah, N ;
Nelson, TR .
MEDICAL PHYSICS, 2004, 31 (02) :226-235
[5]   Dedicated breast CT: Radiation dose and image quality evaluation [J].
Boone, JM ;
Nelson, TR ;
Lindfors, KK ;
Seibert, JA .
RADIOLOGY, 2001, 221 (03) :657-667
[6]   Efficient wavelet-based image denoising algorithm [J].
Cai, ZH ;
Cheng, TH ;
Lu, C ;
Subramanian, KR .
ELECTRONICS LETTERS, 2001, 37 (11) :683-685
[7]   ULTRA-HIGH-STRIP-DENSITY RADIOGRAPHIC GRIDS - A NEW ANTISCATTER TECHNIQUE FOR MAMMOGRAPHY [J].
CHAN, HP ;
FRANK, PH ;
DOI, K ;
IIDA, N ;
HIGASHIDA, Y .
RADIOLOGY, 1985, 154 (03) :807-815
[8]   Cone-beam volume CT breast imaging: Feasibility study [J].
Chen, B ;
Ning, R .
MEDICAL PHYSICS, 2002, 29 (05) :755-770
[9]   An alternative derivation of Katsevich's cone-beam reconstruction formula [J].
Chen, GH .
MEDICAL PHYSICS, 2003, 30 (12) :3217-3226
[10]  
CLICK S, 2003, P SOC PHOTO-OPT INS, V4682, P392