An MCNP-based model of a linear accelerator x-ray beam

被引:42
作者
Lewis, RD
Ryde, SJS [1 ]
Hancock, DA
Evans, CJ
机构
[1] Singleton Hosp, Dept Med Phys & Clin Engn, Swansea In Vivo Anal & Canc Res Grp, Swansea SA2 8QA, W Glam, Wales
[2] Univ Wales, Dept Phys, Swansea In Vivo Anal & Canc Res Grp, Swansea SA2 8PP, W Glam, Wales
关键词
D O I
10.1088/0031-9155/44/5/010
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The Monte Carlo N-Particle radiation transport computer code (MCNP) has been employed on a personal computer to develop a simple model simulating the major components within the beam path of a linear accelerator radiation head, namely the electron target, primary conical collimator, beam flattening filter, wedge filter and the secondary collimators. The model was initially used to calculate the energy spectra and angular distributions of the x-ray beam for the Philips SL 75/5 linear accelerator, in a plane immediately beneath the flattening filter. These data were subsequently used as a 'source' of x-rays at the target position, to assess the emergent beam from the secondary collimators. The depth dose distributions and dose profiles at constant depth for Various field sizes have been calculated for a nominal operating potential of 4 MV and found to be within acceptable limits. It is concluded that the technique may be used to calculate the energy spectra of any linear accelerator upon specification of the component dimensions, materials and nominal accelerating potential. It is anticipated that this work will serve as the basis of a quality control tool for Linear accelerators and treatment planning systems.
引用
收藏
页码:1219 / 1230
页数:12
相关论文
共 31 条
[1]   DETERMINATION OF EFFECTIVE BREMSSTRAHLUNG SPECTRA AND ELECTRON CONTAMINATION FOR PHOTON DOSE CALCULATIONS [J].
AHNESJO, A ;
ANDREO, P .
PHYSICS IN MEDICINE AND BIOLOGY, 1989, 34 (10) :1451-1464
[2]   MONTE-CARLO TECHNIQUES IN MEDICAL RADIATION PHYSICS [J].
ANDREO, P .
PHYSICS IN MEDICINE AND BIOLOGY, 1991, 36 (07) :861-920
[3]   Reconstruction of 6 MV photon spectra from measured transmission including maximum energy estimation [J].
Baker, CR ;
Peck, KK .
PHYSICS IN MEDICINE AND BIOLOGY, 1997, 42 (11) :2041-2051
[4]  
Briesmeister J.F., 1997, LA12625M
[5]   DETERMINATION OF THE PHOTON SPECTRUM OF A CLINICAL ACCELERATOR [J].
BROWNRIDGE, J ;
SAMNICK, S ;
STILES, P ;
TIPTON, P ;
VESELKA, J ;
YEH, N .
MEDICAL PHYSICS, 1984, 11 (06) :794-796
[6]  
Carter L.L., 1975, PARTICLE TRANSPORT S
[7]   CT-based Monte Carlo simulation tool for dosimetry planning and analysis [J].
DeMarco, JJ ;
Solberg, TD ;
Smathers, JB .
MEDICAL PHYSICS, 1998, 25 (01) :1-11
[8]   AN ANALYTIC CALCULATION OF THE ENERGY FLUENCE SPECTRUM OF A LINEAR-ACCELERATOR [J].
DESOBRY, GE ;
BOYER, AL .
MEDICAL PHYSICS, 1994, 21 (12) :1943-1952
[9]   SIMULATION OF X-RAY SPECTRAL RECONSTRUCTION FROM TRANSMISSION DATA BY DIRECT RESOLUTION OF THE NUMERIC SYSTEM AF=T [J].
FRANCOIS, P ;
CATALA, A ;
SCOUARNEC, C .
MEDICAL PHYSICS, 1993, 20 (06) :1695-1703
[10]  
HALBLIEB J, 1988, STRUCTURE OPERATION, P249