A TECHNIQUE OF SCATTER-GLARE CORRECTION USING A DIGITAL FILTRATION

被引:15
作者
HONDA, M [3 ]
EMA, T
KIKUCHI, K
OHE, M
KOMATSU, K
机构
[1] TOSHIBA CO LTD,MED ENGN LAB,OTAWARA,TOCHIGI 3324,JAPAN
[2] TOSHIBA CO LTD,DEPT ADV MED EQUIPMENTS ENGN,OTAWARA,TOCHIGI 3324,JAPAN
[3] TOSHIBA CO LTD,DEPT RADIOL SYST ENGN,OTAWARA,TOCHIGI 3324,JAPAN
关键词
SCATTERED RADIATION; VEILING GLARE; ANTISCATTER GRID; FILTRATION; CONVOLUTION; CORRECTION; PSF; LSF;
D O I
10.1118/1.597062
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 scatter-glare correction technique for x-ray images acquired with an antiscatter grid was developed. In the technique, the scatter-glare image was estimated from exposure conditions and subtracted from the acquired image. The basic procedure in the estimation of the scatter-glare image is convolution filtering; however, the novel aspects of the technique are as follows: (1) To estimate the scatter-glare intensity, a formula that does not include the term of object thickness was used. With this formula, the correction can be performed, even for nonuniform phantoms; (2) To estimate the scatter-glare distribution, the experimental scatter-glare point spread function (PSF) was directly used as a convolution kernel. Although the shape of the PSF changed slightly for water thicknesses of 5-25 cm, we applied the PSF measured at a water thickness of 15 cm to the correction experiments. For the stepped water phantom (10-20 cm), scatter-glare estimation produced an average error of 10%, with respect to the lead bar data. Furthermore, the improvement of image quality and quantitative accuracy resulting from the correction was examined.
引用
收藏
页码:59 / 69
页数:11
相关论文
共 14 条
[1]  
Barnes G T, 1979, Med Phys, V6, P197, DOI 10.1118/1.594562
[2]   MONTE-CARLO SIMULATION OF THE SCATTERED RADIATION DISTRIBUTION IN DIAGNOSTIC-RADIOLOGY [J].
BOONE, JM ;
SEIBERT, JA .
MEDICAL PHYSICS, 1988, 15 (05) :713-720
[3]   CHARACTERIZATION OF THE POINT SPREAD FUNCTION AND MODULATION TRANSFER-FUNCTION OF SCATTERED RADIATION USING A DIGITAL IMAGING-SYSTEM [J].
BOONE, JM ;
ARNOLD, BA ;
SEIBERT, JA .
MEDICAL PHYSICS, 1986, 13 (02) :254-256
[4]   THE VALIDITY OF MONTE-CARLO SIMULATION IN STUDIES OF SCATTERED RADIATION IN DIAGNOSTIC-RADIOLOGY [J].
CHAN, HP ;
DOI, K .
PHYSICS IN MEDICINE AND BIOLOGY, 1983, 28 (02) :109-129
[5]   RADIATION-DOSE IN DIAGNOSTIC-RADIOLOGY - MONTE-CARLO SIMULATION STUDIES [J].
CHAN, HP ;
DOI, K .
MEDICAL PHYSICS, 1984, 11 (04) :480-490
[6]  
DOI K, 1986, RADIOLOGY, V161, P513, DOI 10.1148/radiology.161.2.3763924
[7]   METHOD FOR ESTIMATING THE INTENSITY OF SCATTERED RADIATION USING A SCATTER GENERATION MODEL [J].
HONDA, M ;
KIKUCHI, K ;
KOMATSU, KI .
MEDICAL PHYSICS, 1991, 18 (02) :219-226
[8]  
KIKUCHI K, 1984, Radiology, V153, P248
[9]  
LOVE LA, 1986, P SOC PHOTO-OPT INS, V626, P275
[10]   SCATTER-GLARE CORRECTIONS IN QUANTITATIVE DUAL-ENERGY FLUOROSCOPY [J].
MOLLOI, SY ;
MISTRETTA, CA .
MEDICAL PHYSICS, 1988, 15 (03) :289-297