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针对治疗用X射线束,对均整滤过器的微分束硬化效应进行的蒙特卡罗模拟。

Monte Carlo simulations of the differential beam hardening effect of a flattening filter on a therapeutic x-ray beam.

作者信息

Lee P C

机构信息

Loyola University, Loyola-Hines Department of Radiotherapy, Maywood, Illinois 60153, USA.

出版信息

Med Phys. 1997 Sep;24(9):1485-9. doi: 10.1118/1.598037.

Abstract

A quantitative study of the differential beam hardening effect of the flattening filter on the 6-MV beam of Clinac 2100C has been conducted with Monte Carlo simulations using EGS4 code. The fluence-weighted photon energy of the unfiltered beam decreases from 1.35 MeV at central axis (CAX) to 1.22 MeV at an off-axis distance (OAD) of 20.0 cm. Compared to the unfiltered beam, the fluence-weighted photon energy of the filtered beam increases to 1.93 MeV at CAX and to 1.36 MeV at an OAD f 20.0 cm, respectively. The beam hardening effect was found to be 2.1 times higher at CAX than at an OAD of 20.0 cm. With the differential filtration of the flattening filter, the photon energy fluence reduced to 44% and 78% at CAX and an OAD of 20.0 cm respectively, resulting in the energy fluence of the filtered beam being flat from CAX to an OAD of 20.0 cm. The differential transmission ratios between the high energy and low energy photons decrease as the OAD increases. The percentage depth doses (PDDs) at field size of 10.0 cm x 10.0 cm for both the filtered and unfiltered 6-MV beams at CAX and at an OAD of 15.0 cm were calculated with a Monte Carlo technique based on the simulated spectra and fluence. The calculated PDDs were found to be consistent with the measured data for the filtered beam at CAX and an OAD of 15.0 cm. The beam quality (BQ) of the filtered beam at CAX is also higher than that of the same beam at an OAD of 15.0 cm. All the above results quantitatively demonstrate the differential beam hardening effects of a flattening filter on a therapeutic x-ray beam.

摘要

利用EGS4代码通过蒙特卡罗模拟对Clinac 2100C的6兆伏射线束上均整滤过器的微分束硬化效应进行了定量研究。未滤过射线束的注量加权光子能量在中心轴(CAX)处从1.35兆电子伏降至离轴距离(OAD)为20.0厘米处的1.22兆电子伏。与未滤过射线束相比,滤过射线束的注量加权光子能量在CAX处增至1.93兆电子伏,在OAD为20.0厘米处增至1.36兆电子伏。发现束硬化效应在CAX处比在OAD为20.0厘米处高2.1倍。通过均整滤过器的微分滤过,光子能量注量在CAX处和OAD为20.0厘米处分别降至44%和78%,使得滤过射线束的能量注量从CAX到OAD为20.0厘米处呈平坦状态。高能与低能光子之间的微分透射率随OAD增加而降低。基于模拟光谱和注量,用蒙特卡罗技术计算了CAX处以及OAD为15.0厘米处10.0厘米×10.0厘米射野大小的滤过和未滤过6兆伏射线束的百分深度剂量(PDD)。计算得到的PDD与CAX处以及OAD为15.0厘米处滤过射线束的测量数据一致。CAX处滤过射线束的射束质量(BQ)也高于OAD为15.0厘米处同一射线束的射束质量。上述所有结果定量地证明了均整滤过器对治疗用X射线束的微分束硬化效应。

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