Verification of the omni wedge technique

被引:10
作者
Milliken, BD [1 ]
Turian, JV
Hamilton, RJ
Rubin, SJ
Kuchnir, FT
Yu, CX
Wong, JW
机构
[1] Univ Illinois, Dept Radiol, Chicago, IL 60612 USA
[2] Univ Chicago, Dept Radiat & Cellular Oncol, Chicago, IL 60637 USA
[3] William Beaumont Hosp, Royal Oak, MI 48073 USA
关键词
wedge; multileaf collimator; 3D-conformal radiation therapy; omni wedge; dynamic wedge; film dosimetry;
D O I
10.1118/1.598314
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 optimal field shape achieved using a multileaf collimator (MLC) often requires collimator rotation to minimize the adverse effects of the scalloped dose distribution the leaf steps produce. However, treatment machines are designed to deliver wedged fields parallel or perpendicular to the direction of the leaves. An analysis of cases from our clinic showed that for 25% of the wedged fields used to treat brain and lung tumors, the wedge direction and optimal MLC orientation differed by 20 degrees or more. The recently published omni wedge technique provides the capability of producing a wedged field with orientation independent of the orientation of the collimator. This paper presents a comparison of the three-dimensional (3D) dose distributions of the omni wedged field with distributions of wedged fields produced using both the universal and dynamic wedge techniques. All measurements were performed using film dosimetry techniques. The omni wedge generated fields closely matched the conventional wedged fields. Throughout 95% of the irradiated volume (excluding the penumbra), the dose distribution of the omni wedged field ranged from +5.5 to -3.5+/-1.5% of that of the conventionally wedged fields. Calculation of the omni wedged field is as accurate as conventional wedged field calculation when using a 3D treatment planning systems. For two-dimensional treatment planning systems, where one must assume that the omni wedged field is identical to a conventional field, the calculated field and the delivered field differs by a small amount. (C) 1998 American Association of Physicists in Medicine.
引用
收藏
页码:1419 / 1423
页数:5
相关论文
共 8 条
[1]  
BRAHME A, 1988, STRAHLENTHER ONKOL, V164, P343
[2]   A MULTILEAF COLLIMATOR FIELD PRESCRIPTION PREPARATION SYSTEM FOR CONVENTIONAL RADIOTHERAPY [J].
DU, MN ;
YU, CX ;
SYMONS, M ;
YAN, D ;
TAYLOR, R ;
MATTER, RC ;
GUSTAFSON, G ;
MARTINEZ, A ;
WONG, JW .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1994, 30 (03) :707-714
[3]   EVALUATION OF MULTILEAF COLLIMATOR DESIGN FOR A PHOTON-BEAM [J].
GALVIN, JM ;
SMITH, AR ;
MOELLER, RD ;
GOODMAN, RL ;
POWLIS, WD ;
RUBENSTEIN, J ;
SOLIN, LJ ;
MICHAEL, B ;
NEEDHAM, M ;
HUNTZINGER, CJ ;
KLIGERMAN, MM .
INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 1992, 23 (04) :789-801
[4]   The omni wedge: A method to produce wedged fields at arbitrary orientations [J].
Milliken, BD ;
Hamilton, RJ ;
Rubin, SJ .
MEDICAL PHYSICS, 1996, 23 (03) :337-342
[5]   DYNAMIC UNIVERSAL WEDGE [J].
SHACKFORD, H ;
BJARNGARD, BE ;
VADASH, P .
MEDICAL PHYSICS, 1995, 22 (11) :1735-1741
[6]  
SMITH AR, 1988, UNPUB P 12 VAR US M
[7]   GENERATION AND USE OF MEASUREMENT-BASED 3-D DOSE DISTRIBUTIONS FOR 3-D DOSE CALCULATION VERIFICATION [J].
STERN, RL ;
FRAASS, BA ;
GERHARDSSON, A ;
MCSHAN, DL ;
LAM, KL .
MEDICAL PHYSICS, 1992, 19 (01) :165-173
[8]   A METHOD FOR IMPLEMENTING DYNAMIC PHOTON-BEAM INTENSITY MODULATION USING INDEPENDENT JAWS AND A MULTILEAF COLLIMATOR [J].
YU, CX ;
SYMONS, MJ ;
DU, MN ;
MARTINEZ, AA ;
WONG, JW .
PHYSICS IN MEDICINE AND BIOLOGY, 1995, 40 (05) :769-787