DOSE DISTRIBUTIONS OF X-RAY FIELDS AS SHAPED WITH MULTILEAF COLLIMATORS

被引:31
作者
ZHU, Y [1 ]
BOYER, AL [1 ]
DESOBRY, GE [1 ]
机构
[1] UNIV TEXAS,MD ANDERSON CANCER CTR,DEPT MED ONCOL,HOUSTON,TX 77030
关键词
D O I
10.1088/0031-9155/37/1/011
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Multileaf collimators (MLC) with various blade widths were simulated using standard cerrobend blocks, and three-dimensional dose computations were carried out to study the resultant radiation field edges. Film measurements made with 6 and 18 MV x-ray beams were compared with calculations that employed a three-dimensional Fourier convolution. A spatial accuracy of better than 3 mm was found in the 50% isodose line of the penumbral region with a calculation voxel size of 5 mm x 5 mm x 5 mm. The computer simulation was used to study the deviation of the calculated 50% isodose line from the desired geometric field edge using various MLC blade positions. The study suggests that multileaf collimation to the outside of the desired field edge will lead to overdose outside the field, whereas multileaf collimation to the inside of the desired field edge will lead to underdose inside the field. When the direction of travel of the leaves with respect to the field edge is near 45-degrees, the 50% isodose of a multileaf-collimated beam will fall close to the desired edge with no underdose when the leaf comers are allowed to insert into the desired field edge by 1.2 mm for 6 MV x-rays and 1.4 mm for 18 MV x-rays using a 1 cm wide leaf. These blade offsets account for the scattering of photons and electrons in the medium within the penumbral region.
引用
收藏
页码:163 / 173
页数:11
相关论文
共 15 条
[1]  
BATTISTA J, 1990, COMMUNICATION
[2]   FAST FOURIER-TRANSFORM CONVOLUTION CALCULATIONS OF X-RAY ISODOSE DISTRIBUTIONS IN HOMOGENEOUS MEDIA [J].
BOYER, AL ;
ZHU, YP ;
WANG, L ;
FRANCOIS, P .
MEDICAL PHYSICS, 1989, 16 (02) :248-253
[3]  
BOYER AL, 1990, MED PHYS, V17, P535
[4]  
BRAHME A, 1988, STRAHLENTHER ONKOL, V164, P343
[5]   DOSIMETRIC PRECISION REQUIREMENTS IN RADIATION-THERAPY [J].
BRAHME, A .
ACTA RADIOLOGICA ONCOLOGY, 1984, 23 (05) :379-391
[6]   BROAD BEAM AND NARROW BEAM ATTENUATION IN LIPOWITZS METAL [J].
ELKHATIB, EE ;
PODGORSAK, EB ;
PLA, C .
MEDICAL PHYSICS, 1987, 14 (01) :135-139
[7]   PAIR, TRIPLET, AND TOTAL ATOMIC CROSS-SECTIONS (AND MASS ATTENUATION COEFFICIENTS) FOR 1 MEV-100 GEV PHOTONS IN ELEMENTS Z=1 TO 100 [J].
HUBBELL, JH ;
GIMM, HA ;
OVERBO, I .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1980, 9 (04) :1023-1147
[8]   SHAPING OF ARBITRARY DOSE DISTRIBUTIONS BY DYNAMIC MULTILEAF COLLIMATION [J].
KALLMAN, P ;
LIND, B ;
EKLOF, A ;
BRAHME, A .
PHYSICS IN MEDICINE AND BIOLOGY, 1988, 33 (11) :1291-1300
[9]  
SVENSSON GK, 1984, AAPM13 REP
[10]   BENEFITS EXPECTED FROM SIMPLE CONFORMAL RADIOTHERAPY IN THE TREATMENT OF PELVIC TUMORS [J].
TAIT, D ;
NAHUM, A ;
SOUTHALL, C ;
CHOW, M ;
YARNOLD, JR .
RADIOTHERAPY AND ONCOLOGY, 1988, 13 (01) :23-30