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Development of a methodology to study the effect of magnetic field on dose distributions in an MR-linac, using PRESAGE and Monte Carlo calculations

机译:使用预测和蒙特卡罗计算研究磁场磁场对MR-LINAC中剂量分布效果的方法的发展

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At the Royal Marsden Hospital (RMH) and the Institute of Cancer Research (ICR) a new MR-linac is being installed and commissioned. Modifications to absorbed dose patterns will occur, because the paths of secondary electrons are deflected by Lorentz forces. In this paper, we describe a methodology to measure the effects of magnetic field on dose distributions, using the PRESAGE 3D dosimeter and Monte Carlo (MC) simulations. A poly(methyl methacrylate) (PMMA) phantom has been developed to be positioned between the poles of an electromagnet and accommodate cylindrical samples of PRESAGE. This phantom will be used to study the influence of different magnetic field strengths on radiation deposition from a Cobalt-60 (~(60)Co) beam. Both the orientation of the samples with respect to the magnetic field and radiation beam, and the size of the air gap can be changed. Preliminary MC simulations with two PRESAGE cylinders separated by an air gap, gave a good insight about the dosimetric effects that can be obtained with our newly-developed phantom.
机译:在皇家马尔顿医院(RMH)和癌症研究所(ICR)正在安装和委托新的MR-Linac。将发生对吸收剂量图案的修改,因为二次电子的路径被洛伦兹力偏转。在本文中,我们描述了一种方法来测量磁场对剂量分布对剂量分布的影响,使用预设的3D剂量计和蒙特卡罗(MC)模拟。已经开发了一种聚(甲基丙烯酸甲酯)(PMMA)幻影以定位在电磁铁的极之间并容纳圆柱形样品的镜头。该幻影将用于研究不同磁场强度对钴-60(〜(60)CO)梁的辐射沉积的影响。可以改变相对于磁场和辐射束的样品的取向,以及气隙的尺寸。初步MC模拟与空气隙分开的两个预示圆柱体,对我们新开发的幻影可以获得的剂量效应,良好的洞察力。

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