用蒙特卡罗方法分析变化源对表面距离和场大小对分布剂量的影响

Intan Dillia Nurhadi, Ridwan Ramdani, F. Haryanto, Y. S. Perkasa, M. Sanjaya
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引用次数: 0

摘要

采用蒙特卡罗- EGSnrc方法,研究了辐射源与介质表面距离(SSD)和大照射场(field Size)的变化对线性空气加速器(LINAC)中剂量分布的影响。采用蒙特卡罗仿真方法对BEAMnrc的头部直线机进行建模和仿真。直线加速器的虚拟模型是基于飞机的数据特征直线加速器瓦里安Clinac第九那么它的输出获得信息特征使用BEAMDP光子束,在建模与仿真幽灵在DOSXYZnrc幻影的大小(40 x40x40)立方厘米,以水的形式与材料,使用一束光子6 MV,测试变异SSD在80厘米,90厘米,100.1厘米,110厘米,120厘米和变异字段大小(6 x6) cm2 (10 x10)平方厘米,(20x20) cm2得到曲线的剂型分布百分比深度剂量(PDD)和剖面剂量。结果表明,辐射源与介质表面的距离越小,宽场越大,则剂量分布越大。在SSD和Field Size变化中,辐射剂量从介质表面0 cm处持续显著上升至最大剂量深度(Dmax),超过深度Dmax后剂量开始下降。
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Analysis of Effect of Change Source to Surface Distance (SSD) and the Field Size to Distribution Dose Using Monte Carlo Method-EGSnrc
Research was conducted to analyze the effect of changes in the distance radiation source to the surface it is called the medium Source to Surface Distance (SSD) and wide exposure field (Field Size) on the distribution of the dose in linear air Accelerator (LINAC) using Monte Carlo - EGSnrc. Monte Carlo simulation is used for modeling and simulation head linac at BEAMnrc. Virtual model of the linac is made based on the data characteristics of the aircraft Linac Varian Clinac iX then its output obtained information characteristic photon beam using BEAMDP, while modeling and simulation phantom done on DOSXYZnrc with the size of the phantom is (40x40x40) cm3 , with the material in the form of water, using a beam of photons 6 MV, testing variation SSD at 80 cm, 90 cm, 100.1 cm, 110 cm, 120 cm and variation field size is (6x6) cm2, (10x10) cm2, (20x20) cm2 to obtain disribution of dosage form of curves Percentage Depth dose (PDD) and Profile dose. The results showed that the smaller distance radiation source to the surface of the medium (SSD) and the greater the broad field (field size), then increasing the dose distribution is obtained. In the SSD and Field Size variation, the radiation dose will continue to rise significantly from the surface of the medium 0 cm to a depth of maximum dose (Dmax), then the dose began to decline after passing the depth Dmax.
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