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Monte Carlo Simulation of Linear Accelerator for Dosimetry Analysis

机译:用于剂量测定分析的线性加速器蒙特卡罗模拟

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Radiation therapy is a means to treat cancer that makes use of beams of intense energy to kill cells that are cancerous in nature. The equipment most often used for the procedure is the Linear Accelerator(LINAC). This machine produces beams of X-rays and transports them to the patient's cancerous region. The dose of radiation to be deposited on the patient body needs to be evaluated before application. This paper aims at simulating the radiotherapy process using a LINAC in order to carry out the dosimetric analysis. The simulation makes use of the Monte Carlo method, which has been proven to provide realistic results in terms of accuracy. The proposed work of simulation was carried out using GATE (Geant4 Application for Tomographic Emission) software based on a 6MV Elekta Synergy Platform LINAC. Depth dose and dose profile curves were plotted for dosimetric analysis and uncertainty error values were compared with a similar work on the same field. It was observed that the values are in the same range, proving the credibility for the proposed simulation. This work is in collaboration with MVR Cancer centre at Calicut and is done for helping in the dosimetric analysis of their specific LINACs in future.
机译:放射疗法是一种治疗癌症的方法,这些癌症利用强能束杀死癌症本质上的细胞。最常用于该过程的设备是线性加速器(LINAC)。该机器产生X射线的光束,并将其运送到患者的癌症区域。在施用之前需要评估待沉积在患者体内的辐射剂量。本文旨在模拟使用LINAC进行放射疗法过程,以便进行剂量分析。该模拟利用Monte Carlo方法,已被证明在准确性方面提供了现实的结果。基于6MV Elekta Synergy平台LinaC,使用门(GEANT4应用程序)软件进行拟议的仿真工作。绘制深度剂量和剂量分布曲线用于剂量分析,并将不确定性误差值与相同领域的类似工作进行比较。观察到值在相同范围内,证明了所提出的模拟的可信度。这项工作与Calicut的MVR癌症中心合作,是为了帮助未来对其特定LINAC的剂量分析。

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